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Description of the invention () Field of invention (Please read the notes on the back before filling out this page) This case is a method of vector quantization ', especially a method of non-linear frequency division vector quantization. BACKGROUND OF THE INVENTION In the era of rapid growth of digital multimedia and the Internet, under the limited transmission bandwidth environment, more effective voice encoding and decoding methods must be developed to provide good communication service quality and Utilization rate does not cause any interruption. In the applications of artificial satellites and personal wireless mobile communications, how to meet the communication quality requirements at a lower bit rate is also a subject worthy of study. Printed by the Consumer Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs. In response to the multi-purpose and multi-functional communication era in the 21st century, the International Moving Picture Experts Group (MPEG) has established the MPEG-4 audio protocol. In terms of speech coding technology, low-bit-rate (less than 4.8 kbps) "harmonic and vector excitation signal encoders" (H arm ο nic Vect ãr Excitation Coding (HVXC)) are fixed at 4 kbps and 2 kbps The rate of the synthesized speech is higher than the current FS1016 encoding method with a bit rate of 4.8 kbps. The quality of the synthesized speech signal meets the requirement of "Communication Quality". In addition, the HVXC encoder also uses an adjustable type. Bit rate encoding and decoding architecture (bit rate 1.2k ~ 1.7kbps), and mention 3 on the decoding side. This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) 573294 A7 B7 Intellectual Property Bureau of the Ministry of Economic Affairs Printed by the employee consumer cooperative V. Invention description () Provides functions of variable pitch and variable speed. From this we can see that Î VXC voice editor The code system will gain attention and development in the near future, and may be widely used in communication and digital storage. Î The encoding method adopted by the VXC speech codec and the "multi-band excitation signal speech encoding method" (Multi- Band Excitation (MBE) coding method is similar, this kind of speech is wave coding (H arm ο niccoding) method, the voice signal in the voice signal (V oi ce d) sound box, using the harmonic spectrum amplitude vector quantization coding method; because The false number of speech harmonics is related to the base period of the speech frame, so vector quantization must be performed on the spectrum packet signal with time-varying dimensional characteristics. The coding algorithm not only consumes a lot of calculations, but also synthesizes the harmonic coding method. Speech quality depends on the quantization quality of the harmonic spectrum packet vector, so how to simply and effectively quantify its packet vector is an extremely important and valuable research topic for this coding method. In practice, the result of reducing the amount of calculation , Also helps in personal computer or DSP (Digital Signal Processor) micro-processing chip, Software or hardware implements the encoder and decoder on one chip at the same time, and performs real-time (rea 1-time) speech editing and decoding. HVXC speech encoder, voiced (voiced) or unvoiced (uniced) Different encoding methods are used for speech; traditional linear predictive coded encoding architecture is used for silent speech, and similar multi-band excitation letters are used for spoken speech ) -----------Install -------- Order --------- (Please read the precautions on the back before filling this page) Staff of the Intellectual Property Bureau of the Ministry of Economic Affairs Printed by the Consumer Cooperative 573294. A7 V. Description of the invention () The encoding method of the voice coding method. The encoding method is to first obtain the linear prediction parameters of each input sound box signal, and then pass the speech signal of the sound box through a residual value signal obtained by a linear prediction analysis filter, using a DFT of 2 5 6 points ( Discrete Fourier Transform) to obtain the spectrum and base period (Pi tch Lag) of its residual signal. For voice signals with sound, in order to transmit the residual signal spectrum, it is necessary to estimate the amplitude of the harmonic spectrum of each harmonic frequency band of the Fundamental Frequency, and The composed Spectral Envelope Vector (SEV) is used to find the best codeword and gain by the Spectral Envelope Vector Quantization (SEVQ) method and transmit the best codeword index value to the decoder. Since the dimension of the spectral packet vector is proportional to the size of the voice of the frame, the dimension of the spectral packet vector to be quantized by the spectral packet vector quantization is time-varying. (For a speech signal sampled at 8 k Î z, its spectral packet vector Dimension P ranges from 10 to 67). To solve this variable-dimensional vector quantization (VDVQ) problem, HVXC and speech encoders linearly interpolate the spectrum packet vector into a fixed dimension Î (= 4 4) after the spectral packet shape vector f = ⺠= 1,2, ··· M} (step 11), the vector codebook of r (= 8) bits is used for vector quantization. Please refer to the first figure, which is the conventional harmonic and vector language. 5 This paper size is applicable to China National Standard (CNS) A4 (210 X 297 mm) --------------- I ---- Order -------- line (please read the precautions on the back before filling this page) 573294 A7 B7 V. Description of the invention (Schematic diagram of vector quantization of spectrum packet of audio codec. Two each Codebook with K (= 2;? / 2 = 1 6) codeword vectors (first vector codebook ^^^ Î, ^ 0, 1, ···, ^} Î and second vector codebook 15. In vector quantization, any codeword is composed of one codeword selected from the two codebooks. There are a total of L (= 2 5 6) possible codeword combinations; if / .. and h are used respectively Codebook P (F) and its cable bow I value, codeword vector of fixed dimension #, 7 · = feet 5% + A, as shown in equation (1): if%, / = 0, 1, ... ., 10 represents the linear prediction coefficient of the current coded sound frame, then the Perceptua 1 Weighting Filter 16 is as follows: 10Σα, / Z_ /! W {z) (Please read the precautions on the back first (Fill in this page again.) The company prints 10 10 \ u / Σ ^ 2 ^ '1' Σα ^ / = 0 / = 0 where the values of 6 and h are used in the HVXC encoder as 0 · 9 and 0.4 respectively. W (z The discrete amplitude spectrum of the impulse response obtained by DFT is represented by a vector β, and in the same linear interpolation manner, 1Î is also converted into a fixed-dimensional vector ⺠(0, ζ · = ι, 2, .. ·, μ. In When performing spectral packet vector quantization, the search for the best codeword index / uses the âMinimum Weighted Error Judgment Criterionâ (Step 13): This paper scale applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) 573294. A7 B7 V. Description of the invention (r = arg min j ΣÏÏ i = \ j = 0,1 ,. L In the above formula, the signal r, and its respective vector "and" weight Code direction. Quantities â⺠= r (F) (i) w (F) (ã, (4) = ^ F) (/) w (F) (ã5 (5) The above formula (3) can be derived by It is learned that the best codeword search is equivalent to finding the largest normalized correlation coefficient as follows: (Please read the precautions on the back before filling this page) y * = arg max Σ <) (~ ÎÏ = ã, (6) Ministry of Economy Wisdom The Property Cooperative's Consumer Cooperative printed in formula (4), (5) requires (L + 1) M multiplication operations, and formula (6) for the best codeword search operation requires (2 MU + 1) L multiplications , L divisions and 2 ML additions. After searching through the above method to obtain the best codeword index value /, the optimal gain value required for the codeword is stored in the gain table.) It can be obtained according to formula (7):, g " -x in the hvxc encoder Use the packet gain quantization table G. For this, the best codeword gain value, c, uses Q (2 5). This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm). 573294 Printed by the Consumers âCooperative of Intellectual Property Bureau of the Ministry of Economic Affairs Î7 Î7 5. Description of the invention () Bit scalar quantization. The fixed-dimensional packet vector on the decoding side does not make it ã ã , (8) where Î represents the gain value after quantization. The fixed-dimensional vector ^ F) can be converted into a variable-dimensional vector f by using the base-period value transmitted from the encoding end. Using â³ and a randomly generated phase g = {A, i = 1, 2,. &Quot;, P}, # * IDFT (InverseDiscrete Fourier Transform) method can obtain the synthesized residual value (excitation) signal. This harmonic excitation signal can be output through the Linear Predictive Coding (LPC) synthesis filter to obtain the synthesized speech signal. From the above analysis, it can be known that the error judgment used by the Î V X C encoder to search for the best codeword is the minimum weighted error judgment criterion; the spectrum packet vector is converted into a vector of a fixed dimension, and then vector quantization is performed. Not only is the extra conversion error introduced due to the use of dimensional conversion, the spectral packet vector quantization coding algorithm requires a lot of calculations. Because the quantization error of the spectral packet vector quantization coding algorithm has a great impact on the quality of the synthesized speech on the decoder side, how to simply and effectively quantify its packet vector is extremely important for this speech codec. For this reason, the applicant has invented the âvariable dimensional vector quantification methodâ in this case after careful testing and research in view of the lack of known technology. Summary of the Invention 8 This paper size is applicable to China National Standard (CNS) A4 specification (210 X 297 mm) ----------- installation -------- order ------- -(Please read the notes on the back before filling this page) 573294 A7 B7 V. Description of the invention () (Please read the notes on the back before filling this page) The main purpose of this case is to use the sensory characteristics of the human ear, The perception of the amplitude of the sound signal has a characteristic of non-linear scale and different frequencies with different frequency resolution. Frequency band, and after calculating the power decibel value of the harmonic spectrum contained in each sensory frequency band, vector quantization is performed to greatly reduce the calculation amount and quantization error. Another objective of the case printed by the Employees' Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs is to provide a method of non-linear frequency division vector quantization for vector quantization of a fixed M-dimensional spectrum envelope vector. The steps include: (a ) Define a logarithmic scale vector codebook of L * N dimensions; (b) perform equalization processing on the spectrum packet vectors of fixed M dimensions and perform non-linear band division, thereby obtaining spectrum packets of N dimensions Vector; (c) take the logarithmic values of the spectrum packet vectors of the N dimensions to obtain a first target vector; (d) subtract the average of the first target vector to obtain a second target vector; ( e) Subtract the average of the codeword vectors in one of the N dimensions of the logarithmic scale vector codebook to obtain a reference codeword vector; (f) compare the packet of the second target vector with the reference codeword vector Shape; (g) repeating steps (e) to (f) to compare the codeword vectors of each N dimensions in the logarithmic scale vector codebook one by one; and (h) according to the second goal Vector with the benchmark The result of the comparison of the word vectors resulted in the best codeword in the logarithmic scale vector codebook, and 9 paper sizes are applicable to the Chinese National Standard (CNS) A4 specification (210 X 297 mm). Employees of the Intellectual Property Bureau of the Ministry of Economic Affairs Printed by the Consumer Cooperative 573294. Î7 Î7 V. Description of the Invention () A quantized spectrum packet vector is obtained. According to the above-mentioned concept, the fixed M-dimensional spectrum packet vector is converted from the P-dimensional spectrum packet vector of a sound frame through dimensions. According to the above concept, the P-dimensional spectral packet vectors are variable-dimensional spectral packet vectors. According to the above-mentioned concept, the logarithmic scale vector codebook is obtained by pre-converting the logarithmic value of the fixed-dimensional vector codebook in the harmonic and vector excitation signal encoder in a linear internal difference manner. According to the above concept, the logarithmic scale vector codebook has L codeword vector combinations. According to the above idea, any one of the L codeword vector combinations is a codeword vector of N dimensions. According to the above idea, the equalization process is performed by a pre-emphasis filter. According to the above idea, if the speech and audio width is 4K Πζ, it can be divided into 15 frequency bands. According to the above concept, the corresponding center frequency of the frequency band 1 is 9 1 Πζ, and the corresponding bandwidth is 9 1 Πζ, and it covers the first dimension of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of Band 2 is 1 8 2 Πζ, and the corresponding bandwidth is 9 1 Πζ, and it covers the second dimension of the spectrum envelope vector of the fixed M dimensions. 0 10 This paper scale applies to China National Standard (CNS) A4 Specification (210 X 297 mm) -------------------- Order --------- Line (Please read the back first Please note this page, please fill in this page again) 573294 Î7 Î7 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 5. Description of the invention () According to the above idea, the corresponding center frequency of Band 3 is 2 7 3 Hz and the corresponding bandwidth is 9 1 Î z, and covers the third dimension of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the band 4 is 364 Hz, and the corresponding bandwidth is 91 Hz, and it covers the fourth dimension of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the frequency band 5 is 5 ã Πζ ζ, and the corresponding bandwidth is 1 8 2 Πζ, and covers the 5th to 6th dimensions of the fixed M-dimensional spectrum envelope vector. According to the above idea, the corresponding center frequency of the band 6 is 68 1 Hz, and the corresponding bandwidth is 1 82 Hz, and covers the seventh to eighth dimensions of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the band 7 is 8 6 4 Πζ, and the corresponding bandwidth is 1 8 2 Πζ, and covers the 9th to 10th dimensions of the spectrum packet vector of the fixed M dimensions. According to the above conception, where the corresponding center frequency of band 8 is 1 0 5 5 Πζ and the corresponding bandwidth is 1 8 2 Πζ, and covers the 1st to 12th dimensions of the spectrum packet vector of the fixed M dimensions . According to the above idea, the corresponding center frequency of the band 9 is 1 2 7 3 Πζ, the corresponding bandwidth is 2 7 3 Πζ, and it covers 11 paper sizes. The Chinese national standard (CNS) A4 specification (210 X 297 mm) is applicable. ) ----------- Installation -------- Order --------- (Please read the notes on the back before filling this page) Employees of the Intellectual Property Bureau of the Ministry of Economic Affairs Printed by the consumer cooperative 573294 * Î7 Î7 V. Description of the invention () The 13th to 15th dimensions of the spectrum packet vector of the fixed M dimensions are described. According to the above idea, the corresponding center frequency of the band 10 is 1 5 4 6 Πζ, and the corresponding bandwidth is 2 7 3 Πζ, and covers the 16th to 18th of the spectrum packet vector of the fixed M dimensions. Dimensions. According to the above idea, the corresponding center frequency of the frequency band 1 1 is 1 8 1 8 Πζ, and the corresponding bandwidth is 2 7 3 Πζ, and covers the 19th to the 21st of the spectrum packet vector of the fixed M dimensions. Dimensions. According to the above idea, the corresponding center frequency of the frequency band 12 is 2136 Hz and the corresponding bandwidth is 364 Hz, and covers the 22nd to 25th dimensions of the spectrum packet vector of the fixed M dimensions. According to the above concept, the corresponding center frequency of the band 13 is 2 5 4 6 Πζ, and the corresponding bandwidth is 4 5 5 Πζ, and covers the 26th to 30th dimensions of the spectrum packet vector of the fixed M dimensions . According to the above concept, the corresponding center frequency of the band 14 is 3 0 4 6 Πζ, and the corresponding bandwidth is 5 4 6 Πζ, and covers the 3rd to 3rd of the spectrum packet vector of the fixed M dimensions. Dimensions. According to the above idea, the corresponding center frequency of the frequency band 15 is 3 6 3 6 Πζ, and the corresponding bandwidth is 7 2 7 Πζ, and covers the 37th to 44th dimensions of the spectrum packet vector of the fixed M dimensions . 12 This paper size applies to China National Standard (CNS) A4 specification (210 X 297 mm) ----------- installation -------- order --------- (Please read the notes on the back before filling this page) 573294. A7 B7 V. Description of the invention () (Please read the notes on the back before filling this page) According to the above idea, step (h) is to use a minimum spectrum The distance criterion (Minimum Spectra 1 Distance, MSD) is used to search for the best codeword. According to the above concept, step (h) further comprises obtaining an optimal codeword gain based on the optimal codeword and quantizing the optimal codeword gain. According to the above concept, the optimal codeword gain is quantized by quantizing the Q bits. According to the above concept, step (h) further includes obtaining the quantized .spectral packet vector according to the best codeword and the quantized best codeword gain. Another objective of the case printed by the Employees' Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs is to provide a method of non-linear frequency division vector quantization for vector quantization of a fixed M-dimensional spectrum envelope vector. The steps include: (a ) Define a logarithmic scale vector codebook of L * N dimensions; (b) Unify the frequency spectrum packet and vector of fixed M dimensions and perform non-linear frequency band division to obtain a spectrum of N dimensions Packet vector; (.c) take logarithmic values of the spectrum packet vectors of N dimensions to obtain a first target vector; (d) subtract the average of the first target vector to obtain a second target vector (E) obtaining one of the N codeword vectors from the logarithmic scale vector codebook to obtain a reference codeword vector; (f) comparing the packet shape of the second target vector and the reference codeword vector; (G) Repeat steps (e) to (f) to compare the codeword vectors of each N dimensions in the logarithmic scale vector codebook one by one. 13 This paper size applies the Chinese National Standard (CNS) A4 specification. (210 X 29 7mm) 573294-A7 B7 V. Description of the invention () (Please read the notes on the back before filling this page) Yes; (h) It is based on the comparison result between the second target vector and the reference codeword vector An optimal code day located in the logarithmic scale vector code; and (i) obtaining an optimal codeword gain based on the optimal codeword and quantizing the optimal codeword gain, thereby obtaining a quantization Passed spectrum packet vector. According to the above-mentioned concept, the fixed M-dimensional spectrum packet vector is converted from the P-dimensional spectrum packet vector of a sound frame through dimensions. According to the above concept, the P-dimensional spectral packet vectors are variable-dimensional spectral packet vectors. According to the above-mentioned concept, the logarithmic scale vector codebook is changed from the fixed-dimensional vector codebook of the spectral wave and vector excitation signal encoder to N degrees in a linear internal difference manner, and after taking its logarithmic value, the vector is deducted in advance. The mean is converted. According to the above idea, wherein the logarithmic scale vector code sheet has L codeword vector combinations. According to the above idea, any one of the L codeword vector combinations is a code hand vector of N dimensions. Printed by the Consumer Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs According to the above idea, the chemical treatment is performed by a pre-emphasis filter. According to the above idea, if the speech and audio width is 4K Πζ, it can be divided into 15 frequency bands. According to the above idea, the corresponding center frequency of Band 1 is 9 1 Πζ, and the corresponding bandwidth is 9 1 Πζ, and it covers 14 paper standards applicable to the Chinese National Standard (CNS) A4 specification (210 X 297 573294 Î7 Î7 Economy Printed by the Consumer Cooperatives of the Ministry of Intellectual Property Bureau. 5. Description of the invention () The first dimension of the spectrum envelope vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of Band 2 is 1 8 2 Πζ, corresponding to the bandwidth. Is 9 1 Πζ, and covers the second dimension of the spectrum packet vector of the fixed M dimensions. According to the above concept, the corresponding center frequency of band 3 is 2 7 3 Πζ, and the corresponding bandwidth is 9 1 Πζ, It also covers the third dimension of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the frequency band 4 is 3 6 4 Πζ and the corresponding bandwidth is 9 1 Πζ, and the fixed M is covered. The 4th dimension of the spectrum packet vector of each dimension. According to the above idea, the corresponding center frequency of the frequency band 5 is 5 ΠΠΠζ, the corresponding bandwidth is 1 8 2 Π· ζ, and the spectrum of the fixed M dimensions is covered. seal 5th to 6th dimensions of the vector. According to the above concept, the corresponding center frequency of the frequency band 6 is 6 8 1 Πζ and the corresponding bandwidth is 1 8 2 Πζ, and it covers the fixed M dimensions of the spectrum envelope vector. 7th to 8th dimensions. According to the above idea, the corresponding center frequency of the band 7 is 8 6 4 Πζ, and the corresponding bandwidth is 1 8 2 Πζ, and it covers the ninth of the spectrum packet vector of the fixed M dimensions. To the 10th dimension. 15 This paper size applies to China National Standard (CNS) A4 (210 X 297 mm) -------------------- Order --- ------ (Please read the notes on the back before filling this page) 573294 A7 B7 V. Description of Invention () Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs According to the above concept, the corresponding center frequency of Band 8 is 1 0 5 5 Î z, the corresponding bandwidth is 1 8 2 Î z, and covers the 1st to 12th dimensions of the spectrum packet vector of the fixed M dimensions. According to the above concept, the corresponding center frequency of the frequency band 9 Is 1 2 7 3 Πζ, the corresponding bandwidth is 2 7 3 Πζ, and covers the thirteenth of the spectrum packet vector of the fixed M dimensions To the 15th dimension. According to the above idea, the corresponding center frequency of the frequency band 10 is 15 4 6 Hz and the corresponding bandwidth is 2 73 Hz, and it covers the 16th of the spectrum packet vector of the fixed M dimensions. To the eighteenth dimension. According to the above concept, the corresponding center frequency of the frequency band 11 is 1 8 1 8 Πζ, and the corresponding bandwidth is 2 7 3 Πζ, and covers the first of the spectrum packet vectors of the fixed M dimensions. 1 9 to 21st dimension. According to the above idea, the corresponding center frequency of the band 12 is 2 1 3 6 Πζ, and the corresponding bandwidth is 3 6 4 Πζ, and covers the 2nd to 25th of the spectrum packet vector of the fixed M dimensions. Dimensions. According to the above idea, the corresponding center frequency of the frequency band .1 3 is 2 5 4 6 Πζ, and the corresponding bandwidth is 4 5 5 Πζ, and covers the 26th to 30th dimensions of the spectrum packet vector of the fixed M dimensions. . According to the above idea, the corresponding center frequency of the band 14 is 3 0 4 6 Πζ, and the corresponding bandwidth is 5 4 6 Πζ, and it is covered (please read the precautions on the back before filling this page) ---- order ---- 16 This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) 573294 Printed by the Consumers' Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs A7 _B7 V. Description of the invention () The fixed M dimensions The 31st to 36th dimensions of the spectrum packet vector. According to the above idea, the corresponding center frequency of the frequency band 15 is 3 6 3 6 Πζ, and the corresponding bandwidth is 7 2 7 Πζ, and covers the 37th to 44th dimensions of the spectrum packet vector of the fixed M dimensions . According to the above concept, the step (h) is to search for the best codeword by using a minimum spectral distance quasi-beam 1J (M i n m m p ec t r a 1 D i s t c n c, M S D). According to the above concept, the optimal code and word gain is quantized by scalar Q-bit quantization. According to the above concept, step (i) further comprises obtaining the quantized spectrum packet vector according to the best codeword and the quantized best codeword gain. Another purpose of this case is to provide a method of non-linear frequency division vector quantization for vector quantization of a spectrum packet vector of fixed M dimensions. The steps include: (a) defining a logarithm of L * N dimensions Scale vector codebook; (b) performing equalization processing on the spectrum packet vectors of fixed M dimensions and dividing them into non-linear bands to obtain a spectrum packet vector of N dimensions; (c) the N number of Take the logarithmic value of the spectral envelope vector of the dimension to obtain a first target vector; (d) take a codeword vector of N dimensions in one of the logarithmic scale vector codebooks; (e) compare the first target vector with the code The shape of the packet of the word vector; (f) Repeat steps (d) to (e) to apply the Chinese National Standard (CNS) A4 specification (210 X 297 mm) to every 17 paper sizes in the logarithmic scale vector codebook Li) --------------- 1 ---- order --------- line (please read the notes on the back before filling this page) 573294 A7 B7 1¾-In the middle of the ministry ¾ and the labor and consumption cooperative seal ^-5. Description of the invention <) 1 1 1 _ _ N dimensions The codeword vectors are compared one by one; (g) root 1 1 1 According to the comparison result between the first g-vector of the 1 and the codeword vector, please take 1 to get r = 7 in the logarithmic scale vector codebook. Take the best first read 1 | Shima; and (h) find the best Shima word based on the best read back 1 codeword gain and quantize the best codeword gain into Note 1 of ¢ 7 I get the result of the set spectrum packet orientation. 0 Meaning 1 1 According to the above concept, the fixed M dimensions of the item are then i 1 The spectrum packet vector is the spectrum of the P dimensions of a frame.%} The packet vector is converted into dimensions. Page 1 I According to the above concept, the P dimension spectrum envelope 1 I The packet vector is a variable-dimensional spectrum envelope vector 0 1 1 According to the above concept, the logarithmic scale vector Shima 1 I thin system Encoding from harmonic and vector excitation signals The fixed 1-dimensional vector codebook in the device is converted into a linear internal difference and its logarithmic 1 value is converted into 0 1 I according to the above concept. The logarithmic scale vector code 1 thin system has L stone horse vector combinations. 1 I According to the above-mentioned concept, the L stone horse character vector group I is either a N-dimensional stone horse word vector. 0 1 I According to the above idea, the equalization process is a 1 I pre-emphasis on the consideration wave. The device performs 0 1 according to the above concept. If the speech and audio are 4KÎζ, then 1 I can be divided into 15 frequency bands. 0 1 1 According to the above concept, the corresponding center of the intermediate frequency and 1 1 I frequency is 9 1 Î z, and the corresponding bandwidth is S) 1 Î z ;; 'The letter covers 1 I The fixed M: å 1 Although [degree. Frequency reads 1 packet 丨 to the 1st dimension 1 1 1 1 18 1 1 1 Standard rate (CNS) Î4 specification (210X 297 male ) 573294 Î7 Î7 V. invention is described in () degrees. > According to the above idea, the corresponding center frequency of Band 2 is 182 Hz and the corresponding bandwidth is 9 1 Î z, and it covers the second dimension of the spectrum packet vector of the fixed M dimensions. According to the above concept, the corresponding center frequency of the band 3 is 2 7 3 Πζ, and the corresponding bandwidth is 9] ζ ζ, and it covers the third dimension of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the frequency band 4 is 3 6 4 Πζ, and the corresponding bandwidth is 9 1 Πζ, and covers the fourth dimension of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the frequency band 5 is 5 ã Πζ ζ, and the corresponding bandwidth is 1 8 2 Πζ, and covers the 5th to 6th dimensions of the fixed M-dimensional spectrum envelope vector. & Central Standards of the Ministry of Industry, and only printed by cooperatives ^-(Please read the notes on the back before filling this page) # 1 According to the above idea, the corresponding center frequency of Band 6 is 6 8 1 Πζ, the corresponding frequency The width is 8 2 Πζ and covers the seventh to eighth dimensions of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the band 7 is 8 6 4 Πζ, and the corresponding bandwidth is 1 8 2 Πζ, and covers the 9th to 10th dimensions of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center of the band 8 is 19 paper sizes, which is suitable for the Chinese National Standard (CNS) Î4 specification (210X 297 mm) 573294 A7 B7 V. Description of the invention () The frequency is 1 0 5 5 Î Z, corresponding The bandwidth is 1 8 2 Î Z and covers the 1st to 12th dimensions of the spectrum packet vector of the 1 fixed M dimensions. According to the above idea, the corresponding center frequency of the frequency band 9 is 1 2 7 3 Πζ, and the corresponding bandwidth is 2 7 3 Î. Î, and covers the 1st to 1st 5th of the spectrum packet vector of the fixed M dimensions. Dimensions. According to the above idea, the corresponding center frequency of the band 10 is 1 5 4 6 Πζ, and the corresponding bandwidth is 2 7 3 Πζ, and covers the 16th to 18th of the spectrum packet vector of the fixed M dimensions. Dimensions. According to the above idea, the corresponding center frequency of the band 11 is 1818 Hz, and the corresponding bandwidth is 2 7 3 Πζ, and covers the 19th to 2nd dimensions of the spectrum packet vector of the fixed M dimensions. According to the above idea, the corresponding center frequency of the frequency band 12 is 2 1 3 6 Πζ, and the corresponding bandwidth is 3 6 4 Πζ, and covers the 22nd to 25th dimensions of the spectrum packet vector of the fixed M dimensions. According to the above concept, the corresponding center frequency of the band 13 is 2 5 4 6 Πζ, and the corresponding bandwidth is 4 5 5 Πζ, and covers the 26th to 30th dimensions of the fixed M-dimensional spectrum packet vector. According to the above idea, the corresponding center frequency of band 14 is 3 0 4 6 Πζ, the corresponding bandwidth is 5 4 6 Πζ, and the 3rd 20th paper scale covering the fixed M dimensions of the spectrum envelope vector is applicable to China National standard ((: NS) Î4 specification (210X 297 mm) 573294 Î B7 V. Description of the invention () to the 36th dimension. 1 According to the above concept, the corresponding center frequency of the band 15 is 3 6 3 6 Î z, The corresponding bandwidth is 7 2 7 Î z and covers the 37th to 44th dimensions of the spectrum packet vector of the fixed M dimensions. According to the above concept, step (h) uses a minimum spectral distance of 1J ( Mimim Spec 11.11 Distance (MSD) to perform the search for the best codeword. According to the above idea, the best codeword gain is quantized by quantizing Q bits scalar. According to the above idea, The step (h) further includes obtaining the quantized spectrum packet vector according to the best codeword and the quantized best codeword gain. A simple diagram illustrates the first picture: it is a conventional ÎVXC speech codec Spectrum packet Schematic diagram of quantitative quantization action. Figure 2: It is a comparison chart between the discrete frequency and the traditional continuous natural frequency in a non-linear manner after the frequency band division. The third figure: It is the generalized loudness of general speech and audio. Figure (Equal Loudness Curves) Figure 4 (a): This is the case of the discrete frequency and the traditional continuous natural frequency in a non-linear manner after the frequency f-segment frequency band and bandwidth comparison chart. The fourth figure (b ): It is the discrete frequency and traditional continuity of this case (诮 Please read the notes on the back before filling this page)-\ å£
â¢I 21 æ¬ç´å¼µå°ºåº¦é©å·ä¸åSå®¶æ¨æºï¼CNS ) Î4è¦æ ¼ï¼210X 297å ¬éï¼ 573294 f A7 B7 äºãç¼æèª¬æï¼ï¼ æ§èªç¶é »ç以éç·æ§æ¹å¼åé »å¸¶åå²å¾ä¹é » 帶è1ä¸å¿é »çå°ç §æ¯è¼åã 第äºåï¼å ¶ä¿æ¬æ¡ä¸è¼ä½³å¯¦æ½ä¾ä¹åä½ç¤ºæ åã 第å åï¼a):å ¶ä¿ä¸é³æ¡èªé³ä¿¡èä¹ä¿¡è波形 åã 第å åï¼b):å ¶ä¿ä¸é³æ¡èªé³ä¿¡èä¹é »èåã 第å åï¼c ):å ¶ä¿ä»¥æ¬æ¡ä¹æ¹æ³è以ç¿ç¨ HVXCåééåæ³å°ä¸é³æ¡èªé³ä¿¡èé²è¡é åå¾ä¹é »èå°å æ¯è¼åã 第ä¸åï¼a):å ¶ä¿ä¸æ®µèªé³ä¿¡èä¹ä¿¡è波形 åã 第ä¸åï¼b )Â·Â·å ¶ä¿ä¸æ®µèªé³ä¿¡èä¹åºé±è®åæ² ç·åã 第ä¸åï¼c):å ¶ä¿ä»¥æ¬æ¡ä¹æ¹æ³è以ç¿ç¨ HVXCåééåæ³å°ä¸æ®µèªé³ä¿¡èé²è¡éå å¾ä¹é »èå¤±çæ¯è¼åã (è®å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) è 碼 èå¨é 碼波å éæ¿¾åº¦ 表åèª¿å» çäºå¼·æ¸ å¢ç¬¬é å° 2 5 18 1Χ IX Ïο ΠΠ第 å å å 覺å è½ç¢¼ å¨è¡¨ èæ³¢å¼ ç¹æ¿¾åVæ¦é é » å æ° æä¸ èªªåº ä¾æ æ½æ¡ å¯¦æ¬ ä½³ è¼ æ¹ å é é å å å 2 2 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS ) Î4è¦æ ¼ï¼210X29*7å ¬éï¼ 573294 ^ A7 B7 ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ äºãç¼æèªªæï¼ï¼ å¼ï¼æ ¹æäººé¡è³æµå°è²é³ä¿¡èé »çåæ¯å¹ ä¹ æç¥ï¼å ·åéç·æ§å»åº¦ï¼Î ο η 1 i n e a r S c a 1 e )ä¹ç¹ æ§ï¼ä¾å»ºæ§åééå乿¶æ§ã以ä¸ï¼é¦å 說 æå¦ä½å©ç¨äººè³éç·æ§é »çè§£æåº¦ä¹ç¹æ§ï¼ å°é »èå°å åéä½éç·æ§é »å¸¶åå²ï¼å說æ 以ä½ç¨®åééåæ¹å¼ï¼ä»¥éå°éä½è¨ç®è¤é åº¦ãæ¸å°éå誤差並æé«åæèªé³çåè³ªç® çãæå¾ä»¥å®¢è§ä¹é »è失ç鿏¬ï¼è©ä¼°æ¬ç¼ ææææ¹æ³ä¹æ§è½ï¼ä¸¦ä»¥çè«åæå ¶è¨ç®è¤ é度ã (ä¸ï¼ãéç·æ§é »å¸¶åå² ç±æ¼äººè³è½è¦ºå°é »çä¹è§£æåº¦æéï¼ä¸ å°é«ä½é »ç亦æä¸åä¹è§£æåº¦ï¼å°ä½é »çä¿¡ èä¹é »çè§£æåº¦è¼é«ï¼ï¼æ¬æ¡ä»¥éç·æ§æ¹å¼å é »å¸¶å岿è¥å¹²åæå®é »å¸¶ï¼å¦ç¬¬äºåæ 示ã餿¤ä¹å¤ï¼äººè³å°è²é³ä¿¡è乿¯å¹ æå ä¸åé »çä½ç½®èæä¸å乿å度ï¼å¦ç¬¬ä¸å æç¤ºï¼è³æµæåä¹é³å£ä½æºï¼Sound Pressure Level, SPL)ï¼ä»¥åè²çºå®ä½ãå°èªé³éè¨é » 寬ï¼äººè³å°é »ç2kHz以ä¸ä¹ä¿¡èçæååº¦è¼ å¼·ï¼æ¤ä¸ç¾è±¡ï¼å¯ä»¥ç¨ä¸é å¼·èª¿æ¿¾æ³¢å¨ H(z) ï¼//âº=(2.6 + ^)/(1.6 + 2-1)ï¼å°ä¸åé »çä¹èªé³ ä¿¡èä½çåèçï¼ä½¿å¾ç¸åä¹ä¿¡èè½éï¼å¨ ä¸åä¹é »çæç¸åä¹é¿åº¦ã å©ç¨ä¸è¿°ä¹äººè³æå®æ¨¡åï¼å°ä¿¡èä½ç·¨ 23 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 x 297å ¬éï¼ ---------------------è¨---------ç·Ièµ¢ (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) -Ï I â Ï n n n I ^ Ï Ï Ï n Ï n I ·1 ^ Ï n Ï - 573294 ^ A7 _B7 äºãç¼æèªªæï¼ï¼ (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) 碼æï¼å è¨ç®ååé »å¸¶ä¹ä¿¡èè½éï¼ä¸¦æç® æäººè³ä¸»è§æåä¹é¿åº¦ä½æºï¼Loudness level) åä½ç·¨ç¢¼ï¼å·²è¢«èå¯¦è½ææçç·¨ç¢¼é³æ¨ä¿¡ èãèèªç¶é »ç /(Hz) æ å°æå·´å ï¼Bark) å»åº¦ 6 çæ¹ç¨å¼å¯æè¿°çºï¼ 0 = 681^-1^ / = 0ãä»ä»²ï¼ï¼9) å°æ¯ä¸ Barké »å¸¶ï¼å ¶-3dBé »å¯¬çºä¸å Barkå»åº¦ï¼æ¯ä¸æå®é »å¸¶ä¸ä¸éãä¸å¿é »ç åé »å¯¬å¯åå¥è¡¨ç¤ºå¦ä¸ï¼ fl(n) = 600sinh(^^) ï¼ï¼10) 6 />) = 60ãSinh(^^)ï¼ï¼11) ã /c â»= 600sinh(æ)ï¼ï¼12) ã cb\\{n) = fu{n)- ft{n) (13) ç±æç»ç ç©¶å¾ç¥ï¼å°é »å¯¬4kHzä¹èªé³é » 寬ï¼å¯å岿Nåï¼=1 5) Barké »å¸¶ï¼å¦è¡¨ï¼ä¸ï¼ æç¤ºã ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ 24 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ 573294 â A7 B7 ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ äºãç¼æèªªæï¼ï¼ 表(ä¸ï¼ï¼èªç¶é »çæ å°Barkä¹åæ¸è¡¨(å®ä½:Hz)⢠I 21 This paper is suitable for Sichuan S Standard (CNS) Î4 specification (210X 297mm) 573294 f A7 B7 V. Description of the invention () The natural frequency is divided into non-linear bands and a center frequency Contrast comparison chart. Fifth figure: It is a schematic diagram of the operation of a preferred embodiment of the present case. Figure 6 (a): It is a signal waveform diagram of a sound frame voice signal. The sixth figure (b): it is a spectrum diagram of a sound frame speech signal. Figure 6 (c): This is a comparison chart of the spectral packet after quantizing a sound frame voice signal using the method of this case and the conventional HVXC vector quantization method. The seventh figure (a): it is a signal waveform diagram of a section of speech signal. The seventh diagram (b) is a curve diagram of the base period of a segment of speech signal. Figure 7 (c): This is a comparison chart of spectral distortion after quantizing a speech signal using the method of this case and the conventional HVXC vector quantization method. (Read the precautions on the back before you fill in this page.) The thin-code thin-quantity code wave vector filter table is added to the tuning gain second strong number. The pre-pair is 2 5 18 1 à IX Ïο Î Î. Table thin wave values are filtered by V-density frequency. Xin Mingyi exemplifies the actual implementation of the case. The amount of parity is better. 2 2 This paper size applies to Chinese National Standard (CNS) Î4 specification (210X29 * 7). (%) 573294 ^ A7 B7 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 5. Description of the invention () formula, based on the human ear's perception of the frequency and amplitude of sound signals, with a non-linear scale (N ο η 1 inear S ca 1 e ) To construct a vector quantization architecture. In the following, we first explain how to use the characteristics of the non-linear frequency resolution of the human ear to divide the spectral packet vector into non-linear bands, and then explain which vector quantization method is used to reduce the computational complexity, reduce the quantization error, and improve the quality of the synthesized speech. Quality purpose. Finally, objective spectral distortion measurement is used to evaluate the performance of the method proposed in the present invention, and its theoretical complexity is calculated by theoretical analysis. (I) Non-linear frequency band segmentation Because the human hearing has limited resolution of frequency and different resolutions for high and low frequencies (higher frequency resolution for low-frequency signals), this case uses a non-linear manner to perform frequency band segmentation. Into several sensory frequency bands, as shown in the second figure. In addition, the amplitude of the human ear's sound signal will have different sensitivity due to different frequency positions. As shown in the third figure, the sound pressure level (SPL) felt by the ear is in decibels. . For the voice communication bandwidth, the human ear is more sensitive to signals above 2kHz. This phenomenon can be pre-emphasized by H (z), //âº=(2.6 + ^) / (1.6 + 2 -1) equalize the speech signals of different frequencies so that the same signal energy has the same loudness at different frequencies. Using the above-mentioned human ear sensory model, the signal was edited. 23 paper sizes are applicable to China National Standard (CNS) A4 (210 x 297 mm) ------------------ --- Order --------- line I win (please read the notes on the back before filling this page) -Ï I â Ï nnn I ^ Ï Ï Ï n Ï n I · 1 ^ Ï n Ï -573294 ^ A7 _B7 V. Description of the invention () (Please read the notes on the back before filling out this page) When calculating the code, first calculate the signal energy of each frequency band and convert the loudness level of the subjective perception of the adult ear. For encoding, it has been proved that it can effectively encode music signals. The natural frequency / (Hz) mapping to Bark scale 6 can be described as: 0 = 681 ^ -1 ^ / = 0 ~ from the middle) (9) For each Bark band, its -3dB bandwidth For a Bark scale, the upper and lower limits, center frequency, and bandwidth of each sensory band can be expressed as follows: fl (n) = 600sinh (^^), (10) 6 / >) = 60ãSinh (^^), (11) ã / c â» = 600sinh (faint), (12) ãcb \\ {n) = fu {n)-ft {n) (13) It is known from literature research that the speech and audio bandwidth of 4kHz , Can be divided into N (= 1 5) Bark bands, as shown in Table (1). Printed by the Intellectual Property Bureau of the Ministry of Economic Affairs of the Consumer Cooperatives 24. This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) 573294 'A7 B7 Table (1): Parameter table of natural frequency mapping to Bark (unit: Hz)
Barkå»åº¦ é »å¸¶ä¸é é »å¸¶ä¸é ä¸å¿é »ç é »å¯¬ i //(0 Î(0 Î⺠cb\v{i) 1 50 152 101 102 2 152 257 204 105 3 257 370 313 113 4 370 493 431 123 5 493 630 560 137 6 630 785 706 155 7 785 961 870 176 8 961 1164 1060 203 9 1164 1400 1278 236 10 1400 1674 1532 274 11 1674 1995 1829 321 12 1995 2372 2177 377 13 2372 2815 2858 443 14 2815 3336 3065 521 15 3336 3950 3631 614 çºäºå°é »èå°å åéè½ææåºå®ç¶åº¦ä¹ åéï¼ä¸¦èæ ®äººè³å°ä¸åé »çä¹è½è¦ºè§£æåº¦ 25 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ ------ââè£--------è¨--------- (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) 573294 â A7 B7 äºãç¼æèªªæï¼ï¼ å é± è® è é¢ ä¹ æ³¨ æ äº é å å¡« 寫 æ¬ é ä¸åçç¹æ§ï¼æ¬æ¹æ³å°ç¶ç±ç¶åº¦è½ææå¾å° çåºå®Îåç¶åº¦ä¹é »èå°å åéï¼éç·æ§å 岿Îåé »å¸¶ï¼æ¯ä¸é »å¸¶ä¹é »å¸¶åæ¸åå ¶æ æ¶µèä¹Îåç¶åº¦ä¹é »èå°å åéé »çç´¢å¼å¼ å¦è¡¨ï¼äºï¼æç¤ºã 表(äºï¼ï¼éç·æ§é »çè§£æåº¦é »å¸¶åå²ä¹åæ¸è¡¨æ¸¾ä½:Hz)Bark scale band lower limit band upper limit center frequency bandwidth i // (0 Î (0 Î⺠cb \ v (i) 1 50 152 101 102 2 152 257 204 105 3 257 370 313 113 4 370 493 431 123 5 493 630 560 137 6 630 785 706 155 7 785 961 870 176 8 961 1164 1060 203 9 1164 1400 1278 236 10 1400 1674 1532 274 11 1674 1995 1829 321 12 1995 2372 2177 377 13 2372 2815 2858 443 14 2815 3336 3065 521 15 3336 3950 3631 614 In order to convert the spectrum packet vector into a vector of a fixed dimension, and consider the human ear's hearing resolution for different frequencies 25 This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) -------- âInstallation -------- Order --------- (Please read the precautions on the back before filling this page) 573294 'A7 B7 V. Description of the invention () Read the precautions on the back before Fill in the different characteristics of this page. This method will non-linearly divide the spectrum packet vectors of fixed M dimensions obtained through dimensional conversion into N frequency bands, the frequency band parameters of each frequency band and the spectrum packets of the M dimensions it covers. Vector frequency index The values are shown in Table (2). Table (2): Parameter table for non-linear frequency resolution and frequency band division (Unit: Hz)
Barkå»åº¦ 颿£é »çææ¨ ä¸å¿é »ç é »å¯¬ 1 1-1 91 91 2 2-2 182 91 3 3-3 273 91 4 4-4 364 91 5 5-6 500 182 6 7-8 681 182 7 9-10 864 182 8 11-12 1055 182 9 13-15 1273 273 10 16-18 1546 273 11 19-21 1818 273 12 22-25 2136 364 13 26-30 2546 455 14 31-36 3046 546 ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ 26 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ 573294 k A7 B7 äºãç¼æèªªæï¼ 15 37-44 3636 727 表ï¼ä¸ï¼è表ï¼äºï¼ä¹å·®ç°çºï¼è¡¨ï¼ä¸ï¼çºé£çº æ§èªç¶é »çå°Barkçæ å°åå²ï¼è¡¨ï¼äºï¼çºä»¥ 颿£çæ¹å¼ä½è¿ä¼¼åå²ãè«åé±ç¬¬ååï¼a)å 第ååï¼b)ï¼å ¶ä¿æ¬æ¡ä¹é¢æ£é »çï¼è¡¨ï¼äºï¼ï¼è å³çµ±é£çºæ§èªç¶é »çï¼è¡¨ï¼ä¸ï¼ï¼ä»¥éç·æ§æ¹å¼ åé »å¸¶åå²å¾ä¹é »å¸¶èé »å¯¬å°ç §æ¯è¼å忬 æ¡ä¹é¢æ£é »çï¼è¡¨ï¼äºï¼ï¼èå³çµ±é£çºæ§èªç¶é » çï¼è¡¨ï¼ä¸ï¼ï¼ä»¥éç·æ§æ¹å¼åé »å¸¶åå²å¾ä¹é » 帶èä¸å¿é »çå°ç §æ¯è¼åãç±åå¯ç¥ï¼ä»¥è¡¨ (äºï¼ä½éç·æ§åå²å ¶é »å¯¬åä¸å¿é »çï¼èå¼ (9)ãï¼1 1 )ä¹Barkå»åº¦ç¸è¿ã ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ (äºï¼ãéç·æ§åé »é »èå°å ä¹åééå (Nonlinear Split-Band SEVQï¼NSBSEVQ) åï¼äºï¼æç¤ºçºæ¬ç¼æä¹é »èå°å åéé å乿¶æ§åãåºå®Îåç¶åº¦ä¹é »èå°å åé r(F) = ï¼å©ç¨é 強調濾波å¨51ä½ç åèçå¾ï¼åç¶ç±è¡¨ï¼äºï¼æè¿°ä¹éç·æ§é »å¸¶ åå²ï¼æ¥é©52)ï¼ä»¥å¾è´Nåç¶åº¦é »èå°å å éï¼æ¥èå°æ¯ä¸åå²ä¹é »å¸¶ææ¶µèä¹é »çï¼ æ±å¾åé »å¸¶ä¹åçé »èå¼ï¼æ¥é©5 3 ): r» = 10*log ä¸Î£åâºâº)2*w) Q n ie Band η 27 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ -----------^^è£--------è¨--------- (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) \ï¼2 â¦N (14) 573294 A7 B7 ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ äºãç¼æèªªæï¼ï¼ å ¶ä¸ï¼ï¼ ä»£è¡¨å ¶æ¶µèä¹Îåç¶åº¦ä¹é »è å°å åé颿£é »ç忏ï¼â·ï¼=1ï¼21}代表 ç¶åº¦çºÎä¹H (z)åçé »èãç¶ç±ä¸å¼ï¼æå å°Îåç¶åº¦ä¹é »èå°å åéâï¼ä»¥éç·æ§ æ¹å¼æ å°æÎåç¶åº¦ä¹åé&ãå çºL P Cä¿ æ¸å ·åæè®ï¼Time Varying)ä¹ç¹æ§ï¼å¨ï¼12) å¼è¨ç®é »å¸¶åçé »èæï¼çºéä½è¨ç®è¤é 度ï¼å¿½ç¥äºå æ¬æ¿¾æ³¢å¨ä¹é¿æï¼å çºç±å¯¦é© å¾ç¥ï¼å¨è©²å¼ä¸çå°æ¸éç®ï¼æ¥é©.5 3 )ï¼å¤§å¹ éä½å æ¬æ¿¾æ³¢å¨å°ç¢¼åæå°ä¹å½±é¿ãå°åå§ ç·¨ç¢¼ä¹ç¢¼ååé{gF)ï¼y = 0ï¼lï¼...L-l}亦å¯å©ç¨ç¸åä¹ æ¹å¼ï¼è½ææNåç¶åº¦ç¢¼ååé {^7 = 0,1,2,...L-l}(å²åæ¼å°æ¸å»åº¦åé碼è58 ä¸ï¼ãå©ç¨{ãâ»}(第ä¸ç®æ¨åéï¼å {^^⢠= 0ï¼1ï¼2ï¼.ã-1}(å°æ¸å»åº¦åé碼è58å ¶ä¸ä¹ä¸ 碼ååéï¼ï¼å奿±å¾å ¶åå¼ï¼æ¥é©5 4åä½¿ç¨ ç¢¼ååéåå¼è¡¨57)ï¼ä¸¦å°åéå奿£é¤å ¶ åå¼ï¼å¯å¾å°åå¼çºé¶ä¹åé^(第äºç®æ¨å éï¼å{å}(åºæºç¢¼ååéï¼ãçºæ¸å°ç·¨ç¢¼æå°ä¹ è¨ç®è¤é度ï¼å}(åºæºç¢¼ååéï¼ååå¼è¢«é å è¨ç®ä¸¦äºä»¥å²åï¼æ å¨ç·¨ç¢¼æä¸éèè²»è¨ ç®éï¼å°æ¯ä¸é³æ¡ä½ç¢¼åæå°ä¹åï¼å éè¨ ç®é »èåéï¼ç¬¬äºç®æ¨åéï¼å³å¯ãèå¨é²è¡ æä½³ç¢¼åæå°æï¼æåæ¡ç¨å©ç¨æå°è·é¢æº åï¼å¯æ¾å°ä¸æä½³ä¹ç¢¼åï¼ ï¼æ¤ä¸ Nåç¶åº¦ åéä¹å°å å½¢çèίã第äºç®æ¨åéï¼æçºç¸ 28 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ --------------------è¨---------ç· (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) 573294 ^ A7 _B7 äºãç¼æèªªæï¼ï¼ ä¼¼ï¼æ¥é©5 6): = = (15) j n=\ ä¸å¼ä¸ä¹ç¢¼åæå°é 2 N L å æ³å N L å乿³éç®ãç¶ç±ä¸è¿°æ¹å¼æå°å¾å°æä½³ä¹ 碼åç´¢å¼å¼/ä¹å¾ï¼è©²ç¢¼åæé乿佳å¢ç å¼å¯åå¾å¦ä¸ï¼ â» Î)(16) å «Î·=1 å®æç¢¼åæå°å¾ï¼è¥ç¢¼åç´¢å¼å¼/代表 æä½³ç¢¼åï¼å ¶å°æä¹æä½³ç¢¼åå¢çå¼ï¼å¨å å§ç·¨ç¢¼æ¹æ³æ¡ç¨2ä½å ç´ééåï¼æ¥é©5 5 )ãçº å°æ¤æä½³ç¢¼åå¢çå¼ä½ç´ééåï¼è¥Gçº åå§H VXC編碼å¨ä¹å¢ç碼èï¼Î¶ä»£è¡¨æä½³å¢ çä¹ç´¢å¼å¼å¦ä¸æç¤ºï¼ />argMm{[g^, -2*log10[G0(ã]]2, / = 0-2^1 (17) 宿æä½³ç¢¼ååå¢çæå°å¾ï¼è¥ä»¥Î¶è¡¨ç¤º éåéä¹ç¢¼åå¢çï¼/=16%'+/:代表æä½³ç¢¼åç´¢ å¼å¼ï¼æå¾æå¾å°ä¹éåé乿®å¼é »èå°å åé(å¨åºå®Îåç¶åº¦ï¼å¯è¡¨ç¤ºæï¼ ----------------------è¨---------I秦 (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ ä¸Bark scale discrete frequency index center frequency bandwidth 1 1-1 91 91 2 2-2 182 91 3 3-3 273 91 4 4-4 364 91 5 5-6 500 182 6 7-8 681 182 7 9-10 864 182 8 11-12 1055 182 9 13-15 1273 273 10 16-18 1546 273 11 19-21 1818 273 12 22-25 2136 364 13 26-30 2546 455 14 31-36 3046 546 Intellectual Property Bureau employees of the Ministry of Economic Affairs Printed by the cooperative 26 This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) 573294 k A7 B7 V. Description of the invention (15 37-44 3636 727 The difference between Table (1) and Table (2) is Table (1) shows the mapping of continuous natural frequencies to Bark; Table (2) shows the approximate division in a discrete manner. Please refer to Figure 4 (a) and Figure 4 (b), which are the examples in this case. Discrete frequency (table (b)) and traditional continuous natural frequency (table (a)) after a non-linear division of the frequency band and bandwidth comparison chart and the discrete frequency (table (b)) of this case and traditional continuous Natural frequency (Table (1)) Comparison chart of frequency band and center frequency after band division in a non-linear manner . As can be seen from the figure, the bandwidth and center frequency of the non-linear division using Table (2) are similar to the Bark scales of formulas (9) to (1 1). Printed by the Consumer Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs (2), Nonlinear Split-Band SEVQ (NSBSEVQ) Figure (5) shows the architecture diagram of the spectral packet vector quantization of the present invention. The spectrum packet vector r (F) with fixed M dimensions =, After using the pre-emphasis filter 51 for equalization processing, the non-linear frequency band segmentation (step 52) described in Table (2) is performed to obtain N-dimensional spectral envelope vectors, and then for each of the divided frequency bands, Frequency, find the power spectrum value of each frequency band (step 5 3): r »= 10 * log ä¸ Î£ å âºâº) 2 * w) Q n ie Band η 27 This paper size applies Chinese National Standard (CNS) A4 specification ( 210 X 297 mm) ----------- ^^ Installation -------- Order --------- (Please read the precautions on the back before filling this page ) \, 2⦠N (14) 573294 A7 B7 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 5. Description of the invention () Among them,% represents the number of M covered by it The number of discrete frequency spectrum of the vector packet, â·, = 1,21} Representative Î dimension of H (z) power spectrum. Through the above formula, we will map the spectral packet vectors of M dimensions "in a non-linear manner to vectors of N dimensions &. Because the LPC coefficient has the characteristics of time variation, the frequency band is calculated in (12) In the power spectrum, in order to reduce the computational complexity, the response of the weighting filter is ignored; because it is known from experiments that the logarithmic operation in this formula (step .53) greatly reduces the influence of the weighting filter on the codeword search. For the original codeword vector {gF), y = 0, l, ... Ll} can also be converted into N dimensional codeword vectors {^ 7 = 0,1,2, ... in the same way. Ll} (stored in logarithmic scale vector codebook 58). Use {~ â»} (first target vector) and {^^ ⢠= 0,1,2,. "-1} (of which logarithmic scale vector codebook 58 is One of the codeword vectors), respectively, to obtain the mean value (step 54 and using the codeword vector mean table 57), and subtracting the average value of the vector, respectively, to obtain a vector with a mean value of zero ^ (second target vector) and { (Reference codeword vector). In order to reduce the computational complexity of the code search, (reference codeword vector) and the mean are Calculate and store it, so there is no need to calculate when coding, just calculate the spectral vector (the second target vector) before searching for the codeword of each sound frame. When searching for the best codeword, We use the minimum distance criterion to find an optimal codeword%. The packet shape of this N-dimensional vector is most similar to the second target vector. 28 This paper scale applies the Chinese National Standard (CNS) A4 specification ( 210 X 297 mm) -------------------- Order --------- line (Please read the precautions on the back before filling this page) 573294 ^ A7 _B7 V. Description of the invention () (Step 5 6): = = (15) jn = \ The codeword search in the above formula requires 2 NL addition and NL multiplication operations. The best search is obtained through the above method. After the codeword index value /, the optimal gain value required by the codeword can be obtained as follows: 16 Î) (16) Eight η = 1 After the codeword search is completed, if the codeword index value / represents the best codeword, its Corresponding to the optimal codeword gain value, 2-bit scalar quantization is used in the original encoding method (step 5 5). To make this optimal codeword gain value scalar Quantization, if G is the gain codebook of the original H VXC encoder, ζ represents the index value of the best gain as follows: / > argMm {[g ^, -2 * log10 [G0 (ã]] 2, / = 0-2 ^ 1 (17) After searching for the best codeword and gain, if quantized codeword gain is represented by ζ, / = 16% '+ /: represents the best codeword index value, and the resulting quantization The passing residual value spectrum packet vector (in a fixed M dimension) can be expressed as: ---------------------- Order --------- I Qin (Please read the notes on the back before filling out this page) Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs
61 + k æ°º 0 GO( II ä¼°å å¹³éç«æ° å¤å£ 質éèª ÏÎ±åæ CD :ä¼°ä¸ è©æ®µ -v=å£ å£«å£äºå ãçºä»¥ aj æ *\ar å 質 å æåº¦ åé åº¦è¤ éç® ç®å è² å¥³ 段 å © è² ç· æ®µ å © 9 2 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ 573294 1 A7 B7 äºãç¼æèªªæï¼ 使¸¬è©¦æ¨£æ¬ï¼ä»¥å®¢è§å½¢å¼è©ä¼°éåèª¤å·®ï¼æ åæ¡ç¨è¢«å»£çºä½¿ç¨å¨é »çåä¹èª¤å·®è©ä¼°æ¹ å¼ï¼âé »è失ç度 â ï¼Spectral Distanceï¼SD) ç鿏¬æ¹å¼ï¼å¨å¯è®ç¶åº¦Pæåºå®ç¶åº¦Îï¼ å°éååå¾ä¹è½è¦ºå æ¬é »èå°å åéä½åæ¹ èª¤å·®è¨ç®ãå çºMPEG - 4 HVXC解碼端ï¼å°åº å®ç¶åº¦åé碼åè½æå¯è®ç¶åº¦ä¹æ¯å¹ é »èï¼ ä»¥æ¤é »èå»åæèªé³ä¿¡èï¼ä¸å¨ç·¨ç¢¼ç«¯âè¥ èªé³ç·¨ç¢¼ä½å ççº4 k b p sæï¼éå°åºæ¬å±¤ä¹ è«§æ³¢é »èå°å åééå誤差é²ä¸æ¥ä½å¢å¼·å±¤ (Enhancement Layer) ^ï¼äº¦å¨æè®ç¶åº¦ä¸ å·è¡ï¼ç¶å以ä¸å ©åå ç´ ï¼æåæ¡ç¨å¨æè® ç¶åº¦Pä½éåå質è©ä¼°ãè¥å¨æè®ç¶åº¦Pä½ è©ä¼°ï¼å°æä¸é³æ¡ä¿¡èï¼å ¶é »è失ç度åâ·å¦ ä¸æç¤ºï¼ 1/2 19) 1å°¸ -Σ {2° 1ã§10 Kã^(ã] - 20 log10 [r(0 w(0]}2 Î å°é·åº¦çºK鳿¡ä¹èªé³ä¿¡èï¼æçµä¹å®¢ è§å質è©ä¼°é »è失ç度ï¼çºå°ææé³æ¡ä¹é » è失çå¼ä½å¹³åæ±å¾ï¼å¦ä¸ï¼ ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) å=ä¸( 2 ã >61 + k æ°º 0 GO (II Estimation of averaging Ligu Gulangyu Ïα Xiangwen CD: In the evaluation, the paragraph -v = å£ å£ å£ äº 4. In order to use aj I * \ ar and quality resolution Complex calculations and two voices for male and female sections 9 2 This paper size is applicable to Chinese National Standard (CNS) A4 (210 X 297 mm) 573294 1 A7 B7 V. Description of the invention (for test samples and evaluation in objective form For the quantization error, we adopt a widely used error evaluation method in the frequency domain: the "Spectral Distance" (SD) measurement method. In the variable dimension P or the fixed dimension M, the auditory weighted spectrum before and after quantization is weighted. The packet vector is used to calculate the mean square error. Because the MPEG-4 HVXC decoder converts a fixed-dimensional vector codeword into a variable-dimensional amplitude spectrum and uses this spectrum to synthesize a speech signal; and at the encoding end, if the speech encoding bit rate When it is 4 kbps, the harmonic quantization error of the harmonic spectrum packet vector of the base layer needs to be further enhanced layer (Enhancement Layer) ^. It is also implemented in the time-varying dimension. Based on the above two factors, we use the P is used to evaluate the quality of quantification. If evaluated in the time-varying dimension P, the spectral distortion of a sound frame signal is cut as follows: 1/2 19) 1 corpus-Σ {2 ° 1ã§10 Kã ^ (ã]-20 log10 [r (0 w (0)} 2 Î For speech signals with a length of K frames, the final objective quality is to evaluate the spectral distortion degree, which is obtained by averaging the spectral distortion values of all the frames. , As follows: Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs (please read the precautions on the back before filling out this page) Cut = ä¸ (2 ã >
Ns k=\ è«åé±ç¬¬å åï¼a)å第å åï¼b)ï¼å ¶ä¿ä¸ 鳿¡èªé³ä¿¡èï¼åºé±å¼çº5 4ãå°æä¹è«§æ³¢å æ¸Pçº2 7 )ä¹ä¿¡è波形ååé »èåï¼è第å 30 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ 573294 · A7 B7 äºãç¼æèªªæï¼ è« å é± è® è Φ ä¹ æ³¨ é Ns k = \ Please refer to Figure 6 (a) and Figure 6 (b), which are the signal waveforms of a sound box voice signal (base cycle value is 5 4 and the corresponding harmonic number P is 2 7) And spectrogram, and the 30th paper size is applicable to China National Standard (CNS) A4 (210 X 297 mm) 573294 · A7 B7 V. Description of the invention (please read the note on the back Φ first
f I I I I I åï¼c )ä¿çºä»¥æ¬æ¡ä¹æ¹æ³è以ç¿ç¨Î V X Cåé éåæ³å°è©²é³æ¡èªé³ä¿¡èé²è¡éåå¾ä¹é »è å°å æ¯è¼åã第ä¸åï¼a )å第ä¸åï¼b )ä¿çºä¸ 段èªé³ä¿¡èä¹ä¿¡è波形åååºé±è®åæ²ç· åï¼è第ä¸åï¼c )ä¿çºä»¥æ¬æ¡ä¹æ¹æ³è以ç¿ç¨ Î V X Cåééåæ³å°è©²æ®µèªé³ä¿¡èé²è¡éå å¾ä¹é »èå¤±çæ¯è¼åã表ï¼ä¸ï¼è¡¨ç¤ºå°æ¤å段 䏿èªé³æ¨£æ¬ï¼ä½å®¢è§å質è©ä¼°æå¾å°ä¹å¯¦ é©çµæãç±ä»¥ä¸åè¡¨é¡¯ç¤ºï¼æ¬æ¡ä¹æ¹æ³ï¼ä»¥ ä¸è¿°S Dé »èå¤±çæ¸¬éæ¹å¼è©ä¼°ï¼å ·åè¼å° ä¹éå誤差ã 表(ä¸ï¼ï¼ä¸åçé »èå°å åééåä¹SDéå誤差æ¯è¼è¡¨(å®ä½:dB) è¨ é忍¡å¼ ç·è²#1 ç·è²#2 女è²#1 女1 1 m ! 1 HVXC 3.87 3.46 4.11 3.ï¼ 1 ã 1 k æ¬æ¡ 3.50 3.26 3.72 2. .8 # -1_ ç¶ æ¿ é¨ æº æ § 財 ç¢ å± å¡ å·¥ æ¶ è²» å ä½ ç¤¾ å° è£½ å°åå§éåæ¹å¼åæ¬æ¡ææåºä¹éåæ¹ æ³ï¼å°ä¸å鳿¡èªé³ä¿¡èé »èå°å éåï¼ä½ è¨ç®è¤é度çè«åææ¯è¼ï¼çµæå¦è¡¨ï¼åï¼æ 示ãç±è¡¨ä¸æ¸æå¯ç¥ï¼æ¬æ¡ä¹éåæ¹å¼å¤§å¹ éä½è¨ç®è¤é度ç´9åã 31 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ 573294 A7 B7 ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ äºãç¼æèªªæï¼ï¼ 表(åï¼ï¼ä¸åçé »èå°å åééåä¹è¨ç®è¤é度æ¯è¼è¡¨ é忍¡å¼ å æ¸æ³éç®ï¼A/D) ä¹é¤æ³éç®(M/D) 實ä¾* å æ¸æ³æ¸ ä¹é¤æ³æ¸ HVXC 2ML (3M+2)L+M 22528 34348 æ¬æ¡ 2NL+2N+1 NL+2 7711 3842 *以ä»=44ï¼#=15ï¼ä¹=256ç²ä¾ ç¶ä¸æè¿°ï¼æ¬æ¡å©ç¨äººé¡è³æµä¹æå®ç¹ æ§ï¼å°è²é³ä¿¡èæ¯å¹ 乿ç¥å ·åéç·æ§å»åº¦ åä¸åé »çå ·åä¸åé »çè§£æåº¦ä¹ç¹æ§ï¼å° å鳿¡ä¿¡èç¶éç·æ§é ä¼°æå¾ä¹æ®å¼ä¿¡èç é »èå°å ï¼ä»¥éç·æ§çæ¹å¼å岿åºå®åæ¸ ä¹é »å¸¶ï¼ä¸¦è¨ç®åæå®é »å¸¶å æå«è«§æ³¢é »è ä¹åçåè²å¼å¾ï¼åä½åééåï¼å¤§å¹ éä½ è¨ç®éåéå誤差ï¼ä¸æå¾ä¹ç·¨ç¢¼åæ¸èç¾ è¡æ¨æºè¦ç¯ä¹è§£ç¢¼å¨ç¸å®¹ï¼ä¸éè¦æ¹è®è§£ç¢¼ ç³»çµ±ä¹æ¶æ§ï¼æå©æ¼ç·¨ç¢¼ç³»çµ±ä¹è»ç¡¬é«å¯¦ ç¾ï¼æææ¹åç¿ç¥æè¡ä¹ç¼ºå¤±ï¼æ¯æ å ·æç¢ æ¥å¹å¼ï¼é²èéæç¼å±æ¬æ¡ä¹ç®çã æ¬æ¡å¾ç±çææ¬æèä¹äººå£«ä»»æ½å æè çºè«¸è¬ä¿®é£¾ï¼ç¶çä¸è«å¦éç³è«å°å©ç¯åæ 32 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼ --------------------è¨---------ç· (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) 573294 ^ A7 _B7 äºãç¼æèªªæï¼ï¼ è è· ä¿ æ¬² (è«å é±è®èé¢ä¹æ³¨æäºé å填寫æ¬é ) ç¶æ¿é¨æºæ §è²¡ç¢å±å¡å·¥æ¶è²»åä½ç¤¾å°è£½ 3 3 æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼f I I I I I (c) is a comparison diagram of the frequency spectrum packet after quantizing the voice signal of the sound box by the method of this case and the conventional Î V X C vector quantization method. The seventh diagram (a) and the seventh diagram (b) are a signal waveform diagram and a base cycle change curve of a speech signal, and the seventh diagram (c) is the method of the present case and the conventional Î VXC vector quantization method Comparison chart of spectral distortion after quantizing the speech signal. Table (3) shows the experimental results obtained by objectively evaluating the four Chinese speech samples. The above chart shows that the method in this case is evaluated with the above SD spectral distortion measurement method and has a smaller quantization error. Table (3): Comparison table of SD quantization errors for vector quantization of different spectrum packets (Unit: dB) Custom quantization mode Male voice # 1 Male voice # 2 Female voice # 1 Female 1 1 m! 1 HVXC 3.87 3.46 4.11 3 .: 1 ã1 k This case 3.50 3.26 3.72 2. .8 # -1_ The consumer cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs printed the original quantization method and the quantization method proposed in this case, and quantified the spectral envelope of a voice frame voice signal for theoretical analysis of computational complexity. The comparison is shown in Table (4). According to the data in the table, the quantification method in this case significantly reduced the calculation complexity by about 9 times. 31 This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm) 573294 A7 B7 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 5. Description of the invention () Table (4): Vectorization of different spectrum envelopes Computational complexity comparison table Quantization mode Addition and subtraction (A / D) Multiplication and division (M / D) Example * Addition and subtraction number Multiplication and division number HVXC 2ML (3M + 2) L + M 22528 34348 This case 2NL + 2N + 1 NL + 2 7711 3842 * Taking from = 44, # = 15, B = 256 as an example In summary, this case uses the sensory characteristics of the human ear to have a non-linear scale for the perception of the amplitude of sound signals and different frequencies for different frequencies. Characteristics, the spectral envelope of the residual signal obtained by linear estimation of each sound frame signal is divided into a fixed number of frequency bands in a non-linear manner, and the power decibel value of the harmonic spectrum contained in each sensory frequency band is calculated Then, vector quantization is performed to greatly reduce the calculation amount and quantization error, and the obtained encoding parameters are compatible with the decoders of the current standard specifications. It is not necessary to change the structure of the decoding system, which is beneficial to the hardware and software of the encoding system It is realized that the lack of effective knowledge technology is of industrial value and thus achieves the purpose of developing this case. This case may be modified by any person who is familiar with this technology, but it is not different from the scope of the patent application. 32 The paper size is applicable to the Chinese National Standard (CNS) A4 (210 X 297 mm) --- ----------------- Order --------- line (please read the notes on the back before filling this page) 573294 ^ A7 _B7 V. Description of the invention ( ) For protection (please read the notes on the back before filling out this page) Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 3 3 This paper size applies to China National Standard (CNS) A4 (210 X 297 mm)
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Patent application scope1. A non-linear frequency division vector quantization method for vector quantization of a fixed M-dimensional spectrum envelope vector. The steps are: Contains: (a) a logarithmic scale vector codebook defining an L * N dimension; (b) performing equalization processing on the spectrum packet vector of the fixed M dimensions to perform non-linear band division, thereby obtaining an N number of Dimensional spectrum packet vector; (c) Take logarithmic values of the N dimension spectrum packet vector to obtain a first target vector; (d) Subtract the average value of the first target vector to obtain a second target vector Target vector; (e) subtracting the average value of the codeword vector in one of the N dimensions of the logarithmic scale vector codebook to obtain a reference codeword vector; (f) comparing the second target vector with the reference code Packet shape of the word vector; (g) repeating steps (e) to (f) to compare the codeword vectors of each N dimensions in the logarithmic scale vector codebook one by one; and (h) according to The second head The comparison result vector and the reference vector of the codeword obtained by an actuator located on a logarithmic scale the optimal amount of code book of the code word, and thus have induced a quantized spectrum of vector packets. 2 · The method as described in item 1 of the scope of patent application, wherein the logarithmic scale vector codebook is excited by harmonics and vectors. 34 This paper size is applicable to China National Standard (CNS) A4 (210 X 297 mm)- -------------------- Order --------- line (please read the precautions on the back before filling this page) 573294 * Î8 Î8 C8 D8 Sixth, the scope of patent application (please read the precautions on the back before filling this page) The fixed dimension vector codebook in No. encoder is converted by linear difference method and its logarithmic value in advance. 3. The method according to item 2 of the scope of patent application, wherein the logarithmic scale vector codebook has L codeword vector combinations. 4. The method according to item 3 of the scope of patent application, wherein any one of the L codeword vector combinations is a codeword vector of N dimensions. 5. The method as described in item 1 of the scope of patent application, wherein the chemical treatment is performed with a pre-emphasis filter. 6 · As described in item 1 of the scope of patent application, if the speech and audio width is 4 宽 z, it can be divided into 15 frequency bands. 7 · The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of band 1 is 9 1 Πζ and the corresponding bandwidth is 9 1 Πζ, and covers the first of the spectrum packet vectors of the fixed M dimensions. 1 dimension. 8. The method as described in item 6 of the scope of the patent application, wherein the corresponding center frequency of band 2 is 1 8 2 Πζ and the corresponding bandwidth is 9 1 Πζ, and covers the fixed M-dimensional spectrum envelope vectors. 2nd dimension. Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs9. The method described in item 6 of the scope of patent application, where the corresponding center frequency of band 3 is 2 7 3 Πζ and the corresponding bandwidth is 9 1 Πζ, and covers The third dimension of the spectrum packet vector of the fixed M dimensions. 1 0 · The method as described in item 6 of the scope of patent application, where the corresponding center frequency of band 4 is 3 6 4 Πζ and the corresponding bandwidth is 35. This paper size is applicable to China National Standard (CNS) A4 (210 X 297 cm) (%) 573294, Î8 Î8 C8 D8 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 6. The scope of patent application is 9 1 Î z, and it covers the 4th dimension of the fixed M-dimensional spectrum envelope vector. 1 1. The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of the frequency band 5 is 5 ΠΠζ ζ, the corresponding frequency bandwidth is 1 8 2 Πζ, and the spectrum packet of the fixed M dimensions is covered 5th to 6th dimensions of the vector. 1 2. The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of band 6 is 6 8 1 Πζ and the corresponding bandwidth is 1 8 2 Πζ, and covers the fixed M-dimensional spectrum envelope 7th to 8th dimensions of the vector. 1 3 · The method described in item 6 of the scope of patent application, wherein the corresponding center frequency of band 7 is 8 6 4 Πζ and the corresponding bandwidth is 1 8 2 Πζ, and covers the fixed M-dimensional spectrum envelope The 9th to 10th dimensions of the vector. 14. The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of frequency band 8 is 1 0 5 5 Πζ and the corresponding bandwidth is 1 8 2 Πζ, and the frequency spectrum of the fixed M dimensions is covered. The 11th to 12th dimensions of the packet vector. 15. The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of band 9 is 1 2 7 3 Πζ, the corresponding bandwidth is 2 7 3 Πζ, and the spectrum of the fixed M dimensions is covered The 13th to 15th dimensions of the packet vector. 16 · The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of the frequency band 10 is 1 5 4 6 Πζ, the corresponding frequency bandwidth is 2 7 3 Hz, and the spectrum of the fixed M dimensions is covered The 16th to 18th dimensions of the packet vector. 36 This paper size applies to China National Standard (CNS) A4 (210 X 297 mm) ------- I --------- I --- order ------- I ^ (Please read the notes on the back before filling this page) 573294 A8 B8 C8 D8 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 6. Application for patent scope 1 7. The method described in item 6 of the scope of patent application, where The corresponding center frequency of the band 11 is 1 8 1 8 Î z, and the corresponding bandwidth is 2 7 3 Πζ, and covers the 19th to 21st dimensions of the spectrum packet vector of the fixed M dimensions. 18. The method as described in item 6 of the scope of the patent application, wherein the corresponding center frequency of the frequency band 12 is 2 1 3 6 Πζ, the corresponding bandwidth is 364 Hz, and covers the spectrum envelope vector of the fixed M dimensions 22nd to 25th dimensions. 19. The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of the frequency band 13 is 2 5 4 6 Πζ, the corresponding bandwidth is 4 5 5 Hz, and the frequency spectrum of the fixed M dimensions is covered. The 26th to 30th dimensions of the packet vector. 2 ã. The method as described in item 6 of the scope of patent application, wherein the corresponding center frequency of the frequency band 14 is 3 0 4 6 Πζ and the corresponding bandwidth is 5 4 6 Πζ, and covers the fixed M dimensions. The 31st to 36th dimensions of the spectrum packet vector. 2 1 · The method as described in item 6 of the scope of the patent application, wherein the corresponding center frequency of the frequency band 15 is 3 6 3 6 Πζ, the corresponding bandwidth is 7 2 7 Hz, and the spectrum of the fixed M dimensions is covered The 37th to 4th dimensions of the packet vector. 2 2. The method according to item 1 of the scope of patent application, wherein step (h) is to search for the best codeword by using a Minimum Spectral Distance (MSD) criterion. 2 3. The method as described in item 1 of the scope of patent application, wherein step (h) further includes obtaining a maximum of 37 papers based on the best codeword. This paper size is applicable to China National Standard (CNS) A4 (210 X 297). (Mm) (Please read the notes on the back before filling this page) ί · Ï Hi I 1_1 Ï i ^ i Ï Â· Ï Ï Ï I nn Ï n Ï Ï Ï Ï 573294 * A8 B8 C8 D8 (Please read the precautions on the back before filling out this page.) Optimize the codeword gain, and quantize the optimal codeword gain in scalar on the log scale with Q bits. 2 4. A method of non-linear frequency-division vector quantization for vector quantization of a spectrum packet vector of fixed M dimensions. The steps include: (a) defining a logarithmic scale vector code of L * N dimensions Thin; (b) performing equalization processing on the spectrum packet vectors of fixed M dimensions and dividing them into non-linear bands, thereby obtaining spectrum packet vectors of N dimensions; (c) spectrum packet of N dimensions The vector takes a logarithmic value to obtain a first target vector; (d) subtracts the average value of the first target vector to obtain a second target vector; (e) takes one of the logarithmic scale vector codebooks Codewords of N dimensions to obtain a reference codeword vector; (f) comparing the packet shape of the second target vector with the reference codeword vector; (g) repeating steps (e) to (f), and The codeword vectors of each X dimension in the logarithmic scale vector codebook are compared one by one; printed by the Consumer Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs (h) according to the comparison of the second target vector with the reference codeword vector The result is one located in the The best codeword in the number scale vector codebook; and (i) to obtain an optimal codeword gain based on the best codeword and quantify the optimal codeword gain, thereby obtaining 38 paper sizes applicable to China National Standard (CNS) A4 specifications (210 X 297 mm) 573294 Î8 Î8 C8 D8 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs? 6. Scope of patent application A quantized spectrum packet vector. 2 5. The method as described in item 24 of the scope of patent application, wherein the logarithmic scale vector codebook is changed from the fixed-dimensional vector codebook in the proof to the vector excitation signal encoder to N degrees in a linear internal difference manner, and After taking its logarithmic value, it is converted by deducting the mean of the vector in advance. 26. The method as described in item 25 of the scope of patent application, wherein the logarithmic scale vector codebook has L codeword vector combinations. 27. The method according to item 26 of the scope of patent application, wherein any one of the L codeword vector combinations is a codeword vector of N dimensions. 28. The method as described in item 24 of the scope of patent application, wherein the equalization process is performed by a pre-emphasis filter. 2 9. According to the method described in item 24 of the scope of patent application, if the speech and audio width is 4KHz, it can be divided into 15 frequency bands. 30. The method as described in item 29 of the scope of the patent application, wherein the corresponding center frequency of frequency band 1 is 9 1 Î z and the corresponding bandwidth is 9 1 Πζ, and the spectrum envelope vector of the fixed M dimensions is covered. 1st dimension. 31. The method as described in item 29 of the scope of the patent application, wherein the corresponding center frequency of frequency band 2 is 1 8 2 Πζ and the corresponding bandwidth is 9 1 Πζ, which covers the spectrum packet of the fixed M dimensions The second dimension of the vector. 3 2. The method as described in item 29 of the scope of patent application, where the corresponding center frequency of band 3 is 2 7 3 Πζ, the corresponding frequency is 39. This paper size is applicable to China National Standard (CNS) A4 (210 X 297 cm) (Centi) I ί an n Ï 1_1 n Ï i__i Ï Ï I Ï Ï innnn J, · n Ï 1 Ï an i ^ i i_n II i / Yan (Please read the precautions on the back before filling this page) 573294 A8 B8 C8 D8 6. The scope of patent application is 9 1 Î z, and it covers the third dimension of the spectrum packet vector of the fixed M dimensions. 3 3. The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of frequency band 4 is 3 6 4 Πζ and the corresponding bandwidth is 9 1 Πζ, and covers the fixed M-dimensional spectrum envelope The 4th dimension of the vector. 34. The method as described in item 29 of the scope of the patent application, wherein the corresponding center frequency of the frequency band 5 is 5 ã Πζ ζ, the corresponding bandwidth is 1 8 2 Πζ, and the frequency spectrum of the fixed M dimensions is covered. 5th to 6th dimensions of the packet vector. 35. The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of band 6 is 6 8 1 Πζ, the corresponding bandwidth is 1 82 Hz, and covers the fixed M-dimensional spectrum envelope vectors. 7th to 8th dimensions. 36. The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of frequency band 7 is 8 6 4 Hz and the corresponding bandwidth is 1 8 2 Πζ, and covers the fixed M-dimensional spectrum envelope The 9th to 10th dimensions of the vector. 37. The method described in item 29 of the scope of patent application, wherein the corresponding center frequency of band 8 is 1 0 5 5 Πζ and the corresponding bandwidth is 1 8 2 Πζ, which covers the fixed M dimensions. The 11th to 12th dimensions of the spectrum packet vector. 38. The method as described in item 29 of the scope of the patent application, wherein the corresponding center frequency of band 9 is 1 2 7 3 Πζ, the corresponding bandwidth is 2 7 3 Hz, and the spectrum of the fixed M dimensions is covered The 13th to 15th dimensions of the packet vector. 40 This paper size is in accordance with China National Standard (CNS) A4 (210 X 297 mm) I m I âÏ Â· Ï Ï Ï Î¯ ί Ï Â· Ï Ï Â· Ï I m · Ï ä¸ nn 1 ° JI na ^ i I n Ï Iâ I In (Please read the notes on the back before filling out this page) Printed by the Employees 'Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 573294 · A8 B8 C8 D8 Printed by the Employees' Cooperatives of the Intellectual Property Bureau of the Ministry of Economy 39. The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of the frequency band 10 is 1 5 4 6 Î z, and the corresponding frequency is 2 7 j Πζ 'and> covers the fixed M dimensions 16th to 18th dimensions of the spectrum packet vector. 4 0 · The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of the frequency band 1 1 is 1 8 1 8 Πζ, and the corresponding frequency 1 is 2 7 3 Πζ 'and covers the fixed M dimensions The 19th to 21st dimensions of the spectrum packet vector. 41. The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of the frequency band 12 is 2 1 3 6 Πζ, the corresponding bandwidth is 3 6 4 Hz, and covers the fixed M dimensions. The 22nd to 25th dimensions of the spectrum packet vector. 4 2 · The method described in item 29 of the scope of patent application, wherein the corresponding center frequency of the frequency band 1 3 is 2 5 4 6 Πζ, the corresponding frequency bandwidth is 4 5 5 Hz, and covers the fixed M dimensions. The 26th to 30th dimensions of the spectrum packet vector. 4 3 · The method described in item 29 of the scope of patent application, wherein the corresponding center frequency of the frequency band 1 4 is 3 0 4 6 Πζ, and the corresponding frequency is 5 4 6 Πζ 'and covers the fixed M dimensions The 31st to 36th dimensions of the spectrum packet vector. 4 4. The method as described in item 29 of the scope of patent application, wherein the corresponding center frequency of the frequency band 15 is 3 6 3 6 Πζ, the corresponding bandwidth is 7 2 7 Hz, and covers the fixed M dimensions. 37th to 44th dimensions of the spectrum packet vector. 4 5. The method as described in item 24 of the scope of patent application, wherein step (h) uses a minimum spectral distance criterion. 41 This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm). Ϋ Ï Ï Ï I nnn Ï l Ï Ï I nnn Ï n a δ, I n Iâ (Please read the notes on the back before filling in this page) 573294 · A8 B8 C8 D8 VI. Application scope of patents æ Haigukou D ãra Look for C, e, P, sm, ul code, im Jia äº // »Come in D SM, such as in the step, to measure the amount of the yuan Yuan Yuan Fan Q Q to specialize in Qinggukou · 1/1 \ Shen Qi Item 4 2 Hai = Kou Shi · Jia Zui Jin Yi Zeng Zi j a gl each step is fixed, a uti 'line:, each step will use the ο line method to measure the number of quantities in the direction Parallel frequency (divided linearity, quantitative direction, forward direction, forward direction direction, and forward frequency direction, including LnJ, é¹ Spectral frequency: Degrees include dimension, meaning, dimensionality, dimension, number of pairs, and degree dimension N. Thin uif7 > code b Fixed-frequency degree vector package (please read the note on the back first) (Please fill in this page again on the page.) Progressive and severable points · 'Frequency isotropic envelope LKT ΤÎν ^-After the frequency of the mouth, the dimensionality is maintained, and the amount will be encapsulated in the general direction. = D The frequency dimension can be obtained by the number of d. Take the thin stone · Dimensional dimension pairs-this, the first dimension, the standard dimension, the direction of the stone, the degree of fe, the number of words, and the direction of the direction. The first step of the comparison encapsulation is to overwrite the number printed by the consumer cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs, the number of pairs of words, and the code is A degrees e _ steps ND to d) each: Medium-thin code-dimension contrast comparison progressing one-by-one direction-word character code mysterious degree ° Dimension-direction heading-first according to the root S to get the word and the code fruit is best compared to the thin-code dimension dimension number In the h position, the best word and code are best, and the best word and code are better. According to the 42 paper standards, the Chinese national standard (CNS) A4 specification (210 X 297 mm) is applicable. 573294 A8 B8 C8 D8 6. Apply for a patent Range (please first Note read back surface of the re-fill of this page) and the gain of the gain quantization optimum codeword, and thus have induced a quantized spectrum of vector packets. 48. The method as described in item 47 of the scope of patent application, wherein the logarithmic scale vector codebook is a linear dimensional vector codebook with harmonic and vector excitation signal encoders and takes its logarithmic value , Converted in advance. 49. The method according to item 48 of the scope of patent application, wherein the logarithmic scale vector codebook has L codeword vector combinations. 50. The method as described in item 49 of the scope of patent application, wherein any one of the L codeword vector combinations is a codeword vector of N dimensions. 5 1 · The method as described in item 47 of the scope of patent application, wherein the equalization process is performed with a pre-emphasis filter. 5 2 · According to the method described in item 47 of the scope of patent application, if the speech and audio width is 4K Î z, it can be divided into 15 frequency bands. 53. The method as described in item 52 of the scope of patent application, wherein the corresponding center frequency of frequency band 1 is 9 1 Πζ and the corresponding bandwidth is 9 1 Πζ, and the spectrum envelope vector of the fixed M dimensions is covered. 1st dimension. Printed by the Consumer Cooperative of the Intellectual Property Bureau of the Ministry of Economic Affairs 5 4 · The method described in item 52 of the scope of patent application, where the corresponding center frequency of Band 2 is 182 Hz and the corresponding bandwidth is 9 ΠΠζ, which covers the fixed The second dimension of the spectrum packet vector of the M dimensions. 5 5 · The method described in item 52 of the scope of patent application, where the corresponding center frequency of Band 3 is 2 7 3 Hz, and the corresponding frequency is 43. This paper size is applicable to China National Standard (CNS) A4 (210 X 297 mm) ) 573294 · Î8 Î8 C8 D8 Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs 6. The scope of patent application is 9 1 Î z, and it covers the third dimension of the fixed M-dimensional spectrum envelope vector. 56. The method as described in item 52 of the scope of patent application, wherein the corresponding center frequency of frequency band 4 is 3 6 4 Πζ and the corresponding bandwidth is 9 1 Πζ, and covers the fixed M-dimensional spectrum envelope The 4th dimension of the vector. 5 7 · The method described in item 52 of the scope of patent application, wherein the corresponding center frequency of frequency band 5 is 5 ΠΠΠζ, the corresponding frequency bandwidth is 1 8 2 Πζ, and the spectrum of the fixed M dimensions is covered 5th to 6th dimensions of the packet vector. 5 8 · The method as described in item 52 of the scope of patent application, wherein the corresponding center frequency of band 6 is 6 8 1 Πζ and the corresponding bandwidth is 1 8 2 Πζ, which covers the frequency spectrum of the fixed M dimensions The 7th to 8th dimensions of the packet vector. 59. The method as described in item 52 of the scope of the patent application, wherein the corresponding center frequency of frequency band 7 is 8 6 4 Πζ, the corresponding bandwidth is 18 2 Hz, and the frequency spectrum envelope vector of the fixed M dimensions is covered. 9th to 10th dimensions. 6 0 · The method described in item 52 of the scope of the patent application, wherein the corresponding center frequency of band 8 is 1 0 5 5 Πζ and the corresponding bandwidth is 1 8 2 Πζ, which covers the fixed M dimensions. The 11th to 12th dimensions of the spectrum packet vector. 6 1. The method as described in item 52 of the scope of patent application, wherein the corresponding center frequency of the frequency band 9 is 1 2 7 3 Πζ, the corresponding frequency bandwidth is 2 7 3 Hz, and the frequency spectrum of the fixed M dimensions is covered. The 13th to 15th dimensions of the packet vector. 44 This paper size is applicable to China National Standard (CNS) A4 specification (210 X 297 mm) ------------ ãShock -------- Order ----------- --- line (please read the precautions on the back before filling this page) 573294 · A8 B8 C8 D8 VI. Patent Application Scope Printed by Employee Consumer Cooperative of Intellectual Property Bureau of the Ministry of Economic Affairs 6 2. As described in Item 52 of the scope of patent application In the method, the corresponding center frequency of the frequency band 10 is 1 5 4 6 Î z and the corresponding bandwidth is 2 7 3 Hz, and the 16th to 18th dimensions of the spectrum packet vector of the fixed M dimensions are covered. 6 3 · The method described in item 52 of the scope of patent application, wherein the corresponding center frequency of the frequency band 1 1 is 1 8 1 8 Πζ, the corresponding frequency bandwidth is 2 7 3 Hz, and covers the fixed M dimensions. The 19th to 21st dimensions of the spectrum packet vector. 64. The method as described in item 52 of the scope of patent application, wherein the corresponding center frequency of the frequency band 12 is 2 1 3 6 Πζ, the corresponding frequency bandwidth is 3 6 4 Hz, and covers the fixed M dimensions. The 22nd to 25th dimensions of the spectrum packet vector. 6 5 · The method described in item 52 of the scope of patent application, wherein the corresponding center frequency of the frequency band 13 is 2 5 4 6 Πζ, and the corresponding frequency overview is 4 5 5 Πζ 'and covers the fixed number of M The 26th to 30th dimensions of the spectrum packet vector of the dimension. 6 6. The method as described in item 52 of the scope of the patent application, where the corresponding center frequency of frequency band 1 4 is 3 0 4 6 Πζ, and the corresponding frequency is 5 4 6 Πζ 'and covers the fixed M dimensions. The 31st to 36th dimensions of the spectrum packet vector. 6 7 · The method described in item 52 of the scope of patent application, wherein the corresponding center frequency of the frequency band 15 is 3 6 3 6 Πζ, the corresponding bandwidth is 7 2 7 Hz, and covers the fixed M dimensions. 37th to 44th dimensions of the spectrum packet vector. 6 8 · The method as described in item 47 of the scope of patent application, wherein step (h) uses a minimum spectral distance criterion 45 This paper size applies the Chinese National Standard (CNS) A4 specification (210 X 297 mm)- ----------------- Order --------- (Please read the notes on the back before filling this page) 573294 ^ as B8 C8 D8 Range (Minimum Spectral Distance, MS D) to search for the best codeword. 69. The method as described in item 47 of the scope of patent application, wherein step (h) is to quantize the optimal codeword gain with Q-bit scalar quantization and perform it on a logarithmic scale. ------- I --- I ------! OrderâI ---- I (Please read the precautions on the back before filling this page) Printed by the Consumer Cooperatives of the Intellectual Property Bureau of the Ministry of Economic Affairs æ¬ç´å¼µå°ºåº¦é©ç¨ä¸ååå®¶æ¨æºï¼CNS)A4è¦æ ¼ï¼210 X 297å ¬éï¼This paper size applies to China National Standard (CNS) A4 (210 X 297 mm)
TW91121386A 2002-09-18 2002-09-18 Method for quantifying non-linear frequency division vector TW573294B (en) Priority Applications (1) Application Number Priority Date Filing Date Title TW91121386A TW573294B (en) 2002-09-18 2002-09-18 Method for quantifying non-linear frequency division vector Applications Claiming Priority (1) Application Number Priority Date Filing Date Title TW91121386A TW573294B (en) 2002-09-18 2002-09-18 Method for quantifying non-linear frequency division vector Publications (1) Publication Number Publication Date TW573294B true TW573294B (en) 2004-01-21 Family ID=32734235 Family Applications (1) Application Number Title Priority Date Filing Date TW91121386A TW573294B (en) 2002-09-18 2002-09-18 Method for quantifying non-linear frequency division vector Country Status (1) Cited By (2) * Cited by examiner, â Cited by third party Publication number Priority date Publication date Assignee Title US8983852B2 (en) 2009-05-27 2015-03-17 Dolby International Ab Efficient combined harmonic transposition US11657788B2 (en) 2009-05-27 2023-05-23 Dolby International Ab Efficient combined harmonic transpositionRetroSearch is an open source project built by @garambo | Open a GitHub Issue
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