IP Library › Granted Patent US 9,799,344
Granted Patent B2
US 9,799,344 · App. 15/141,346 · Granted Oct 24, 2017

Audio signal processing system for discontinuity correction

Inventors: Kimitaka Tsutsumi (Tokyo, JP); Kei Kikuiri (Tokyo, JP); Atsushi Yamaguchi (Tokyo, JP)
Assignee: NTT DoCoMo, Inc.
G10L19/09G10L19/005G10L19/135H04L1/00G10L19/07G10L2019/0011
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Quick Facts
Patent No.
US 9,799,344
App. No.
15/141,346
Granted
Oct 24, 2017
Kind
B2
Abstract

An audio signal processing device comprises a discontinuity detector configured to determine an occurrence of a discontinuity from a sudden increase of an amplitude of decoded audio obtained by decoding the first audio packet which is received correctly after an occurrence of a packet loss, and a discontinuity corrector for correcting the discontinuity of the decoded audio.

Claims (25)

1. An audio signal processing method executed by an audio signal processing device, comprising:

decoding, by the audio signal processing device, an audio packet to obtain decoded audio and immitance spectral frequency/line spectral frequency (ISF/LSF) parameters;

determining, by the audio signal processing device, a sudden increase of an amplitude of the decoded audio, the audio packet being a first audio packet received correctly after an occurrence of a packet loss; and

mitigating, by the audio signal processing device, the sudden increase of the amplitude of the decoded audio,

wherein the step of mitigating the sudden increase of the amplitude of the decoded audio comprises

changing a distance between elements of the ISF/LSF parameters.

2. The audio signal processing method of claim 1 , wherein estimating the sudden increase of the amplitude of the decoded audio comprises estimating the sudden increase of the amplitude of the decoded audio based on a power of an excitation signal of the decoded audio.

3. The audio signal processing method of claim 1 , wherein estimating the sudden increase of the amplitude of the decoded audio comprises estimating the sudden increase of the amplitude of the decoded audio based on quantized codebook gains used to calculate an excitation signal of the decoded audio.

4. The audio signal processing method of claim 1 , wherein estimating the sudden increase of the amplitude of the decoded audio comprises estimating the sudden increase of the amplitude of the decoded audio based on an increase in a gain of an excitation signal of the decoded audio above a determined level.

5. The audio signal processing method of claim 1 , wherein estimating the sudden increase of the amplitude of the decoded audio comprises decoding auxiliary information included in the audio packet, the auxiliary information comprising an estimate of the sudden increase of the amplitude of the decoded audio.

6. An audio signal processing device comprising:

a central processing unit;

a discontinuity detector executed by the central processing unit to determine an occurrence of a sudden increase of amplitude of the decoded audio, the decoded audio being obtained by decoding a first audio packet that is received correctly after an occurrence of a packet loss; and

a discontinuity corrector executed by the central processing unit to mitigate the sudden increase of amplitude of the decoded audio,

wherein the discontinuity corrector is further executed by the central processing unit to change, according to a result of determination of an occurrence of the sudden increase of amplitude, a distance between elements of immitance spectral frequency/line spectral frequency (ISF/LSF) parameters, the ISF/LSF parameters obtained by decoding the first audio packet.

7. An audio signal processing method to be executed by an audio signal processing device, comprising:

quantizing immitance spectral frequency/line spectral frequency (ISF/LSF) parameters during encoding of an audio signal to obtain quantized ISF/LSF parameters;

generating concealment ISF/LSF parameters, the concealment ISF/LSF parameters being representative of concealment information about the ISF/LSF parameters;

determining an occurrence of a sudden increase of an amplitude of the audio signal, which occurs in a first audio packet which is received correctly after an occurrence of a packet loss, wherein determining the occurrence of the sudden increase of the amplitude of the audio signal comprises using distances between the quantized ISF/LSF parameters and the generated concealment ISF/LSF parameters; and

encoding auxiliary information indicative of the determination of the occurrence of the sudden increase of the amplitude of the audio signal.

8. An audio signal processing device comprising:

an immitance spectral frequency/line spectral frequency (ISF/LSF) quantizer configured to quantize ISF/LSF parameters of an audio signal to generate quantized ISF/LSF parameters;

an ISF/LSF concealer configured to generate concealment ISF/LSF parameters representative of concealment information about the ISF/LSF parameters;

a discontinuity detector configured to determine an occurrence of a sudden increase of an amplitude of the audio signal, which occurs in a first audio packet, which is received correctly after an occurrence of a packet loss, the discontinuity detector being configured to use distances between the quantized ISF/LSF parameters and the concealment ISF/LSF parameters generated by the ISF/LSF concealer to determine an occurrence of the sudden increase of the amplitude of the audio signal; and

an auxiliary information encoder configured to encode auxiliary information indicative of the determination of the occurrence of the sudden increase of the amplitude of the audio signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2016
From: TSUTSUMI, KIMITAKA; KIKUIRI, KEI; YAMAGUCHI, ATSUSHI
To: NTT DOCOMO, INC.
Reel/Frame 038921/0132 →
Priority Claims (1)
JP 2013-224120 · Oct 29, 2013 · national
Continuity (2)
Continuation PCTJP2014077215 · Oct 10, 2014
Related Publication 20160240202A1 · Aug 18, 2016