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US20070055510A1 - Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding

US20070055510A1 - Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding - Google PatentsConcept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding Download PDF Info
Publication number
US20070055510A1
US20070055510A1 US11/323,965 US32396505A US2007055510A1 US 20070055510 A1 US20070055510 A1 US 20070055510A1 US 32396505 A US32396505 A US 32396505A US 2007055510 A1 US2007055510 A1 US 2007055510A1
Authority
US
United States
Prior art keywords
signal
channel
parametric data
parametric
deriving
Prior art date
2005-07-19
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US11/323,965
Inventor
Johannes Hilpert
Christof Faller
Karsten Linzmeier
Ralph Sperschneider
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fraunhofer Gesellschaft zur Foerderung der Angewandten Forschung eV
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
2005-07-19
Filing date
2005-12-29
Publication date
2007-03-08
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=36873210&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=US20070055510(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
2005-12-29 Application filed by Individual filed Critical Individual
2005-12-29 Priority to US11/323,965 priority Critical patent/US20070055510A1/en
2006-06-21 Priority to DK23214133.3T priority patent/DK4307125T3/en
2006-06-21 Priority to EP23214134.1A priority patent/EP4307126B1/en
2006-06-21 Priority to DK23180543.3T priority patent/DK4235440T3/en
2006-06-21 Priority to PL06743182T priority patent/PL1908056T3/en
2006-06-21 Priority to HUE23214133A priority patent/HUE068233T2/en
2006-06-21 Priority to PT232141325T priority patent/PT4307124T/en
2006-06-21 Priority to PT231805433T priority patent/PT4235440T/en
2006-06-21 Priority to FIEP18180076.4T priority patent/FI3404656T3/en
2006-06-21 Priority to ES23214134T priority patent/ES2995111T3/en
2006-06-21 Priority to PT181800764T priority patent/PT3404656T/en
2006-06-21 Priority to PT232141333T priority patent/PT4307125T/en
2006-06-21 Priority to ES18180076T priority patent/ES2952871T3/en
2006-06-21 Priority to HUE23214134A priority patent/HUE067925T2/en
2006-06-21 Priority to HUE18180076A priority patent/HUE064455T2/en
2006-06-21 Priority to HUE23214132A priority patent/HUE068230T2/en
2006-06-21 Priority to EP23214132.5A priority patent/EP4307124B1/en
2006-06-21 Priority to JP2008521820A priority patent/JP5265358B2/en
2006-06-21 Priority to RU2008106225/09A priority patent/RU2382418C2/en
2006-06-21 Priority to AU2006272127A priority patent/AU2006272127B2/en
2006-06-21 Priority to ES06743182.5T priority patent/ES2690278T3/en
2006-06-21 Priority to HUE23180543A priority patent/HUE069874T2/en
2006-06-21 Priority to BRPI0616019-0A priority patent/BRPI0616019B1/en
2006-06-21 Priority to EP23180543.3A priority patent/EP4235440B1/en
2006-06-21 Priority to DK18180076.4T priority patent/DK3404656T3/en
2006-06-21 Priority to PCT/EP2006/005971 priority patent/WO2007009548A1/en
2006-06-21 Priority to ES23214132T priority patent/ES2995054T3/en
2006-06-21 Priority to DK23214134.1T priority patent/DK4307126T3/en
2006-06-21 Priority to DK23214132.5T priority patent/DK4307124T3/en
2006-06-21 Priority to EP18180076.4A priority patent/EP3404656B1/en
2006-06-21 Priority to CA2614384A priority patent/CA2614384C/en
2006-06-21 Priority to PT06743182T priority patent/PT1908056T/en
2006-06-21 Priority to CN2006800259749A priority patent/CN101223578B/en
2006-06-21 Priority to FIEP23214134.1T priority patent/FI4307126T3/en
2006-06-21 Priority to PL23214134.1T priority patent/PL4307126T3/en
2006-06-21 Priority to ES23214133T priority patent/ES2995055T3/en
2006-06-21 Priority to FIEP23180543.3T priority patent/FI4235440T3/en
2006-06-21 Priority to PT232141341T priority patent/PT4307126T/en
2006-06-21 Priority to EP23214133.3A priority patent/EP4307125B1/en
2006-06-21 Priority to MX2008000828A priority patent/MX2008000828A/en
2006-06-21 Priority to FIEP23214133.3T priority patent/FI4307125T3/en
2006-06-21 Priority to ES23180543T priority patent/ES3002034T3/en
2006-06-21 Priority to PL23214132.5T priority patent/PL4307124T3/en
2006-06-21 Priority to PL23214133.3T priority patent/PL4307125T3/en
2006-06-21 Priority to PL23180543.3T priority patent/PL4235440T3/en
2006-06-21 Priority to FIEP23214132.5T priority patent/FI4307124T3/en
2006-06-21 Priority to EP06743182.5A priority patent/EP1908056B1/en
2006-06-21 Priority to KR1020087002860A priority patent/KR100946688B1/en
2006-06-21 Priority to PL18180076.4T priority patent/PL3404656T3/en
2006-06-23 Priority to MYPI20062999A priority patent/MY149198A/en
2006-07-17 Priority to TW095125971A priority patent/TWI339028B/en
2006-07-19 Priority to US11/458,646 priority patent/US8180061B2/en
2006-12-12 Assigned to FRAUNHOFER-GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. reassignment FRAUNHOFER-GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: FALLER, CHRISTOF, HILPERT, JOHANNES, LINZMEIER, KARSTEN, SPERSCHNEIDER, RALPH
2007-03-08 Publication of US20070055510A1 publication Critical patent/US20070055510A1/en
2007-12-26 Priority to IL188425A priority patent/IL188425A0/en
2008-02-18 Priority to NO20080850A priority patent/NO342863B1/en
Status Abandoned legal-status Critical Current
Links Images Classifications Definitions Landscapes Abstract

The purpose of the invention is to bridge the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding by gradually improving the sound of an up-mix signal while raising the bit-rate consumed by the side-information starting from 0 up to the bit-rates of the parametric methods. More specifically, it provides a method of flexibly choosing an “operating point” somewhere between matrixed-surround (no side-information, limited audio quality) and fully parametric reconstruction (full side-information rate required, good quality). This operating point can be chosen dynamically (i.e. varying over time) and in response to the permissible side-information rate, as it is dictated by the individual application.

Description Claims (26) 1

. Multi-channel audio decoder for processing an audio signal and for processing first parametric data describing a first portion of a multi-channel signal, wherein for a second portion of the multi-channel signal no parametric data or second parametric data is processed, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal, comprising:

a processor for deriving an intermediate signal from the audio signal,

using a first deriving rule for deriving a first portion of the intermediate signal, the first portion of the intermediate signal corresponding to the first portion of the multi-channel audio signal, wherein the first deriving rule is depending on the first parametric data; and

using a second deriving rule for deriving a second portion of the intermediate signal, the second deriving rule using no parametric data or the second parametric data.

2. Multi-channel audio decoder in accordance with claim 1 , which is operative to process first parametric data that is describing a time portion or a frequency portion of the multi-channel signal.

3. Multi-channel audio decoder in accordance with claim 1 , which is operative to process first parametric data that is comprising a description of a time portion of the multi-channel audio signal, wherein only information on a predetermined frequency band of the multi-channel audio signal is contained within the description.

4. Multi-channel audio decoder in accordance with claim 1 , in which the processor is operative to use the first deriving rule for deriving a frequency portion of the intermediate signal ranging from a low-frequency limit to a high-frequency limit.

5. Multi-channel audio decoder in accordance with claim 4 , which is operative to additionally process a window information signalling at least the high-frequency limit.

6. Multi-channel audio decoder in accordance with claim 4 , which is operative to derive at least the high-frequency limit from the first parametric data using a window estimation rule.

7. Multi-channel audio decoder in accordance with claim 6 , in which the window estimation rule includes counting the amount of parametric data submitted for a signal portion of the down-mix signal and comparing the counted amount of parametric data with a nominal amount of parametric data.

8. Multi-channel audio decoder in accordance with claim 1 , in which the processor is operative to calculate the second deriving rule from information on the down-mix signal or from the second parametric data.

9. Multi-channel audio decoder in accordance with claim 1 , in which the processor is operative to use a predefined rule as the second deriving rule.

10

. Multi-channel audio decoder in accordance with

claim 1

, which is operative to process parametric data that is comprising one or more spatial audio parameters chosen from the following list of spatial audio parameters:

ICC (inter-channel correlation)

CLD (channel level difference)

CPC (channel prediction coefficient).

11. Multi-channel audio decoder in accordance with claim 1 , further comprising a de-correlator to derive a de-correlated signal from the intermediate signal using a de-correlation filter.

12

. Multi-channel audio decoder in accordance with

claim 1

further comprising an up-mixer for calculating a reconstruction of the multi-channel signal,

using a first up-mixing rule for calculating a first portion of the reconstruction of the multi-channel signal corresponding to the first portion of the multi-channel signal, wherein the first upmixing rule is depending on the first parametric data; and

using a second up-mixing rule for calculating a second portion of the reconstruction of the multi-channel signal, the second up-mixing rule using no parametric data or the second parametric data.

13

. Multi-channel encoder for generating a parametric representation describing spatial properties of a multi-channel audio signal, the multi-channel encoder comprising:

a parameter generator for generating spatial parameters;

an output interface for generating the parametric representation,

wherein the parameter generator or the output interface is adapted to generate the parametric representation such that the parametric representation includes first parametric data for a first portion of the multi-channel signal and wherein for a second portion of the multi-channel signal no parametric data or second parametric data is included in the parametric representation, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal.

14. Multi-channel encoder in accordance with claim 13 , in which the output interface is further adapted to include a window information in the parametric representation, the window information indicating the first portion of the multi-channel audio signal.

15. Multi-channel encoder in accordance with claim 13 , further including a portion decider for deciding which portion of the multi-channel signal is used as the first portion, using a quality criterion.

16. Multi-channel encoder in accordance with claim 15 , in which the portion decider is operative to decide such that a quality of a reconstruction of the multi-channel signal using the parametric representation stays within a quality-tolerance range.

17. Multi-channel encoder in accordance with claim 15 , in which the portion decider is operative to decide such that a maximum amount of storage space consumed by the parametric representation is not exceeded.

18

. Multi-channel encoder in accordance with

claim 13

, additionally comprising a down-mixer for deriving a down-mix signal from the multi-channel signal; and

in which the output interface is further adapted to out-put the down-mix signal.

19

. Multi-channel encoder in accordance with

claim 18

, in which the parameter generator is operative to generate a full set of spatial parameters for the first portion and for the second portion of the multi-channel signal;

in which the down-mixer is operative to derive the down-mix signal using a full down-mixing rule depending on the full set of spatial parameters; and

in which the output interface is operative to generate the parametric representation using at least the spatial parameters corresponding to the first portion of the multi-channel signal.

20

. Method for processing an audio signal and for processing first parametric data describing a first portion of a multi-channel signal, wherein for a second portion of the multi-channel signal no parametric data or second parametric data is processed, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal, the method comprising:

deriving an intermediate signal from the down-mix signal using a first deriving rule depending on the first parametric data for deriving a first portion of the intermediate signal, the first portion of the intermediate signal corresponding to the first portion of the multi-channel audio signal; and

deriving a second portion of the intermediate signal using a second deriving rule, the second deriving rule using the second parametric data or no parametric data.

21

. Method for generating a parametric representation describing spatial properties of a multi-channel audio signal, the method comprising:

generating spatial parameters; and

generating the parametric representation such that the parametric representation includes first parametric data for a first portion of the multi-channel signal and wherein for a second portion of the multi-channel signal no parametric data or second parametric data is included in the parametric representation, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal.

22. Parametric representation describing spatial properties of a multi-channel audio signal, the parametric representation including first parametric data for a first portion of the multi-channel signal and wherein for a second portion of the multi-channel signal no parametric data or second parametric data is included, the second parametric data requiring less information units than the first parametric data for an identical portion of the multi-channel signal.

23. Parametric representation in accordance with claim 23 , which is stored on a computer-readable storage medium.

24

. Computer program having a program code for performing, when running on a computer, a method for processing an audio signal and for processing first parametric data describing a first portion of a multi-channel signal, wherein for a second portion of the multi-channel signal no parametric data or second parametric data is processed, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal, the method comprising:

deriving an intermediate signal from the down-mix signal using a first deriving rule depending on the first parametric data for deriving a first portion of the intermediate signal, the first portion of the intermediate signal corresponding to the first portion of the multi-channel audio signal; and

deriving a second portion of the intermediate signal using a second deriving rule, the second deriving rule using the second parametric data or no parametric data.

25

. Computer program having a program code for performing, when running on a computer, a method for generating a parametric representation describing spatial properties of a multi-channel audio signal, the method comprising:

generating spatial parameters; and

generating the parametric representation such that the parametric representation includes first parametric data for a first portion of the multi-channel signal and wherein for a second portion of the multi-channel signal no parametric data or second parametric data is included in the parametric representation, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal.

26

. Transcoder for generating a parametric representation of a multi-channel audio signal using spatial parameters describing the spatial properties of the multi-channel audio signal, comprising:

a parameter generator to generate the parametric representation such that the parametric representation includes first parametric data being derived from the spatial parameters for a first portion of the multi-channel signal and wherein for a second portion of the multi-channel signal no parametric data or second parametric data is included in the parametric representation, the second parametric data requiring less information units than the first parametric data when describing an identical portion of the multi-channel signal.

US11/323,965 2005-07-19 2005-12-29 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding Abandoned US20070055510A1 (en) Priority Applications (54) Application Number Priority Date Filing Date Title US11/323,965 US20070055510A1 (en) 2005-07-19 2005-12-29 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding DK23214133.3T DK4307125T3 (en) 2005-07-19 2006-06-21 Concept to bridge the gap between parametric multichannel audio coding and matrix surround multichannel coding EP23214134.1A EP4307126B1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding DK23180543.3T DK4235440T3 (en) 2005-07-19 2006-06-21 Concept to bridge the gap between parametric multichannel audio coding and matrix surround multichannel coding PL06743182T PL1908056T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding HUE23214133A HUE068233T2 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PT232141325T PT4307124T (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PT231805433T PT4235440T (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding FIEP18180076.4T FI3404656T3 (en) 2005-07-19 2006-06-21 A principle for bridging the gap between parametric multichannel audio coding and matrix-wrapped multichannel coding ES23214134T ES2995111T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PT181800764T PT3404656T (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PT232141333T PT4307125T (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding ES18180076T ES2952871T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multichannel audio coding and matrix surround multichannel coding HUE23214134A HUE067925T2 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding HUE18180076A HUE064455T2 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding HUE23214132A HUE068230T2 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding EP23214132.5A EP4307124B1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding JP2008521820A JP5265358B2 (en) 2005-07-19 2006-06-21 A concept to bridge the gap between parametric multi-channel audio coding and matrix surround multi-channel coding RU2008106225/09A RU2382418C2 (en) 2005-07-19 2006-06-21 Method of combining parametric multichannel audio encoding with matrix multichannel encoding three-dimensional sound AU2006272127A AU2006272127B2 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding ES06743182.5T ES2690278T3 (en) 2005-07-19 2006-06-21 Concept for bridging the space between parametric multichannel audio coding and matrix surround multichannel coding HUE23180543A HUE069874T2 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding BRPI0616019-0A BRPI0616019B1 (en) 2005-07-19 2006-06-21 concept to bridge the gap between parametric encoding and matrixed-surround multichannel audio encoding EP23180543.3A EP4235440B1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding DK18180076.4T DK3404656T3 (en) 2005-07-19 2006-06-21 Concept to bridge the gap between parametric multichannel audio coding and matrix surround multichannel coding PCT/EP2006/005971 WO2007009548A1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding ES23214132T ES2995054T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding DK23214134.1T DK4307126T3 (en) 2005-07-19 2006-06-21 Concept to bridge the gap between parametric multichannel audio coding and matrix surround multichannel coding DK23214132.5T DK4307124T3 (en) 2005-07-19 2006-06-21 Concept to bridge the gap between parametric multichannel audio coding and matrix surround multichannel coding EP18180076.4A EP3404656B1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding CA2614384A CA2614384C (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PT06743182T PT1908056T (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding CN2006800259749A CN101223578B (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding FIEP23214134.1T FI4307126T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PL23214134.1T PL4307126T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding ES23214133T ES2995055T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding FIEP23180543.3T FI4235440T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PT232141341T PT4307126T (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding EP23214133.3A EP4307125B1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding MX2008000828A MX2008000828A (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding. FIEP23214133.3T FI4307125T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding ES23180543T ES3002034T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PL23214132.5T PL4307124T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PL23214133.3T PL4307125T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding PL23180543.3T PL4235440T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding FIEP23214132.5T FI4307124T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding EP06743182.5A EP1908056B1 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding KR1020087002860A KR100946688B1 (en) 2005-07-19 2006-06-21 Multi-channel audio decoder, multi-channel encoder, audio signal processing method and recording medium recording a program for performing the processing method PL18180076.4T PL3404656T3 (en) 2005-07-19 2006-06-21 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding MYPI20062999A MY149198A (en) 2005-07-19 2006-06-23 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding TW095125971A TWI339028B (en) 2005-07-19 2006-07-17 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding US11/458,646 US8180061B2 (en) 2005-07-19 2006-07-19 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding IL188425A IL188425A0 (en) 2005-07-19 2007-12-26 Concept for bridging the gap between parameteric multi-channel audio coding and matrixed-surround multi-channel coding NO20080850A NO342863B1 (en) 2005-07-19 2008-02-18 Concept for connecting the gap between parametric multichannel audio coding and matrix surround multichannel coding Applications Claiming Priority (2) Application Number Priority Date Filing Date Title US70100105P 2005-07-19 2005-07-19 US11/323,965 US20070055510A1 (en) 2005-07-19 2005-12-29 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding Related Child Applications (2) Application Number Title Priority Date Filing Date US11/458,646 Continuation US8180061B2 (en) 2005-07-19 2006-07-19 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding US13/727,532 Division US8990456B2 (en) 2005-12-30 2012-12-26 Method and apparatus for memory write performance optimization in architectures with out-of-order read/request-for-ownership response Publications (1) Family ID=36873210 Family Applications (2) Application Number Title Priority Date Filing Date US11/323,965 Abandoned US20070055510A1 (en) 2005-07-19 2005-12-29 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding US11/458,646 Active 2030-05-31 US8180061B2 (en) 2005-07-19 2006-07-19 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding Family Applications After (1) Application Number Title Priority Date Filing Date US11/458,646 Active 2030-05-31 US8180061B2 (en) 2005-07-19 2006-07-19 Concept for bridging the gap between parametric multi-channel audio coding and matrixed-surround multi-channel coding Country Status (21) Cited By (14) * Cited by examiner, † Cited by third party Publication number Priority date Publication date Assignee Title US20070223749A1 (en) * 2006-03-06 2007-09-27 Samsung Electronics Co., Ltd. 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