IP Library › Granted Patent US 7,991,621
Granted Patent B2
US 7,991,621 · App. 12/497,375 · Granted Aug 2, 2011

Method and an apparatus for processing a signal

Assignees: LG Electronics Inc.; Industry-Academic Cooperation Foundation, Yonsei University
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Quick Facts
Patent No.
US 7,991,621
App. No.
12/497,375
Granted
Aug 2, 2011
Kind
B2
Abstract

An apparatus for processing an encoded signal and method thereof are disclosed, by which an audio signal can be compressed and reconstructed in higher efficiency. An audio signal processing method includes the steps of identifying whether a type of an audio signal is a music using first type information, if the type of the audio signal is not the music signal, identifying whether the type of the audio signal is a speech signal or a mixed signal using second type information, and if the type of the audio signal is determined as either the speech signal or the mixed signal, reconstructing the audio signal according to a coding scheme applied per frame using coding identification information. If the type of the audio signal is the music signal, the first type information is received only. If the type of the audio signal is the speech signal or the mixed signal, both of the first type information and the second type information are received. Accordingly, various kinds of audio signals can be encoded/decoded in higher efficiency.

Claims (52)

1. In an audio signal processing apparatus including an audio decoder, a method of processing an audio signal, comprising the steps of:

identifying whether a coding type of the audio signal is a music signal coding type using first type information;

if the coding type of the audio signal is not the music signal coding type, identifying whether the coding type of the audio signal is a speech signal coding type or a mixed signal coding type using second type information;

if the coding type of the audio signal is the mixed signal coding type, extracting spectral data and a linear predictive coefficient from the audio signal;

generating a residual signal for linear prediction by performing inverse frequency conversion on the spectral data; and

reconstructing the audio signal by performing linear prediction coding on the linear predictive coefficient and the residual signal,

wherein if the coding type of the audio signal is the music signal coding type, the first type information is used only and

wherein if the coding type of the audio signal is the speech signal coding type or the mixed signal coding type, both of the first type information and the second type information are used.

2. The method of claim 1 , further comprising the steps of:

if the coding type of the audio signal is the mixed signal coding type, reconstructing a high-frequency band signal using a low-frequency band signal of the reconstructed audio signal; and

generating a plurality of channels by upmixing the reconstructed audio signal.

3. The method of claim 1 , wherein the audio signal includes a plurality of subframes and wherein the second type information exists by a unit of the subframe.

4. The method of claim 1 , wherein if the coding type of the audio signal is the music signal coding type, the audio signal comprises a frequency-domain signal, wherein if the coding type of the audio signal is the speech signal coding type, the audio signal comprises a time-domain signal, and wherein if the coding type of the audio signal is the mixed signal coding type, the audio signal comprises an MDCT-domain signal.

5. The method of claim 1 , the linear predictive coefficient extracting step comprises the steps of:

extracting a linear predictive coefficient mode; and

extracting the linear predictive coefficient having a variable bit size corresponding to the extracted linear predictive coefficient mode.

6. An apparatus for processing an audio signal, comprising:

a demultiplexer extracting first type information and second type information from a bitstream;

a decoder determining unit identifying whether a coding type of the audio signal is a music signal coding type using first type information, the decoder, if the coding type of the audio signal is not the music signal coding type, identifying whether the coding type of the audio signal is a speech signal coding type or a mixed signal coding type using second type information, the decoder then determining a decoding scheme;

an information extracting unit, if the coding type of the audio signal is the mixed signal coding type, extracting spectral data and a linear predictive coefficient from the audio signal;

a frequency transforming unit generating a residual signal for linear prediction by performing inverse frequency conversion on the spectral data; and

a linear prediction unit reconstructing the audio signal by performing linear prediction coding on the linear predictive coefficient and the residual signal,

wherein if the coding type of the audio signal is the music signal coding type, the first type information is used only and

wherein if the coding type of the audio signal is the speech signal coding type or the mixed signal coding type, both of the first type information and the second type information are used.

7. The apparatus of claim 6 , further comprising:

a bandwidth extension decoding unit, if the coding type of the audio signal is the mixed signal coding type, reconstructing a high-frequency band signal using a low-frequency band signal of the reconstructed audio signal; and

a channel extension decoding unit generating a plurality of channels by upmixing the reconstructed audio signal.

8. The apparatus of claim 6 , wherein the audio signal includes a plurality of subframes and wherein the second type information exists by a unit of the subframe.

9. The apparatus of claim 6 , wherein if the coding type of the audio signal is the music signal coding type, the audio signal comprises a frequency-domain signal, wherein if the coding type of the audio signal is the speech signal coding type, the audio signal comprises a time-domain signal, and wherein if the coding type of the audio signal is the mixed signal coding type, the audio signal comprises an MDCT-domain signal.

10. The apparatus of claim 6 , wherein the information extracting unit extracting the linear predictive coefficient checks a linear predictive coefficient mode and then extracts the linear predictive coefficient having a variable bit size corresponding to the extracted linear predictive coefficient mode.

11. In an audio signal processing apparatus including an audio coder for processing an audio signal, a method of processing the audio signal, comprising the steps of:

determining a coding type of the audio signal;

if the audio signal is a music signal, generating first type information indicating that the audio signal is coded into a music signal coding type;

if the audio signal is not the music signal, generating second type information indicating that the audio signal is coded into either a speech signal coding type or a mixed signal coding type;

if the coding type of the audio signal is the mixed signal coding type, generating a linear predictive coefficient by performing linear prediction coding on the audio signal;

generating a residual signal for the linear prediction coding;

generating a spectral coefficient by frequency-transforming the residual signal; and

generating an audio bitstream including the first type information, the second type information, the linear predictive coefficient and the residual signal,

wherein if the coding type of the audio signal is the music signal coding type, the first type information is generated only and

wherein if the coding type of the audio signal is either the speech signal coding type or the mixed signal coding type, both of the first type information and the second type information are generated.

12. The method of claim 11 , wherein the audio signal includes a plurality of subframes and wherein the second type information is generated per the subframe.

13. An apparatus for processing the audio signal, comprising:

a signal classifying unit determining a coding type of the audio signal, the signal classifying unit, if the audio signal is a music signal, generating first type information indicating that the audio signal is coded into a music signal coding type, the signal classifying unit, if the audio signal is not the music signal, generating second type information indicating that the audio signal is coded into either a speech signal coding type or a mixed signal coding type;

a linear prediction modeling unit, if the coding type of the audio signal is the mixed signal coding type, generating a linear predictive coefficient by performing linear prediction coding on the audio signal;

a residual signal extracting unit generating a residual signal for the linear prediction coding; and

a frequency transforming unit generating a spectral coefficient by frequency-transforming the residual signal,

wherein if the coding type of the audio signal is the music signal coding type, the first type information is generated only and

wherein if the coding type of the audio signal is either the speech signal coding type or the mixed signal coding type, both of the first type information and the second type information are generated.

14. The apparatus of claim 13 , wherein the audio signal includes a plurality of subframes and wherein the second type information is generated per the subframe.

15. The apparatus of claim 13 , comprising:

a coefficient generating unit, if the coding type of the audio signal is the music signal coding, generating the linear predictive coefficient using the linear prediction coding, the coefficient generating unit giving a weight to the linear predictive coefficient; and

a reference determining unit generating a noise shaping reference using the weight-given linear predictive coefficient.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2013
From: INDUSTRY-ACADEMIC COOPERATION FOUNDATION, YONSEI UNIVERSITY
To: INTELLECTUAL DISCOVERY CO., LTD.
Reel/Frame 030607/0394 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2009
From: OH, HYEN O; SONG, JEONG OOK; LEE, CHANG HEON; JUNG, YANG WON; KANG, HONG GOO
To: LG ELECTRONICS INC.; INDUSTRY-ACADEMIC COOPERATION FOUNDATION, YONSEI UNIVERSITY
Reel/Frame 023552/0930 →
Continuity (3)
Continuation PCTKR2009001050 · Mar 3, 2009
Provisional Application 61033032 · Mar 3, 2008
Related Publication 20100070284A1 · Mar 18, 2010