Method for reduction of aliasing introduced by spectral envelope adjustment in real-valued filterbanks
First Claim
Patent Images
1. An apparatus for producing a full bandwidth audio signal having a low band portion and a high band portion, the apparatus comprising:
- an audio decoder that decodes an encoded audio signal to produce a time domain decoded audio signal, the time domain decoded audio signal including only the lowband portion;
a cosine modulated, real-valued analysis filterbank that receives the time domain decoded audio signal and produces a plurality of real-valued subband signals;
a high frequency reconstructor that regenerates at least some of the highband portion by copying one or more of the plurality of real-valued subband signals up to the highband portion;
an aliasing detector that identifies subband signals where aliasing created by spectral envelope adjustment of an audio signal may occur based at least in part on a linear predictor applied to at least some of the plurality of real-valued subband signals;
an energy estimator that estimates an energy of at least some of the plurality of copied real-valued subband signals;
an aliasing reducer that modifies a gain to be applied to at least some of the identified subbands signals based at least in part on the estimated energy; and
a real-valued synthesis filterbank that combines the plurality of real-valued subband signals with the highband portion to produce the full bandwidth audio signal, the full bandwidth audio including real-valued time domain samples,wherein the apparatus is implemented at least in part with one of more hardware elements, andwherein the linear predictor uses a covariance method of linear predictive coding (LPC).
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Abstract
The present invention proposes a new method for improving the performance of a real-valued filterbank based spectral envelope adjuster. By adaptively locking the gain values for adjacent channels dependent on the sign of the channels, as defined in the application, reduced aliasing is achieved. Furthermore, the grouping of the channels during gain-calculation, gives an improved energy estimate of the real valued subband signals in the filterbank.
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Citations
2 Claims
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1. An apparatus for producing a full bandwidth audio signal having a low band portion and a high band portion, the apparatus comprising:
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an audio decoder that decodes an encoded audio signal to produce a time domain decoded audio signal, the time domain decoded audio signal including only the lowband portion; a cosine modulated, real-valued analysis filterbank that receives the time domain decoded audio signal and produces a plurality of real-valued subband signals; a high frequency reconstructor that regenerates at least some of the highband portion by copying one or more of the plurality of real-valued subband signals up to the highband portion; an aliasing detector that identifies subband signals where aliasing created by spectral envelope adjustment of an audio signal may occur based at least in part on a linear predictor applied to at least some of the plurality of real-valued subband signals; an energy estimator that estimates an energy of at least some of the plurality of copied real-valued subband signals; an aliasing reducer that modifies a gain to be applied to at least some of the identified subbands signals based at least in part on the estimated energy; and a real-valued synthesis filterbank that combines the plurality of real-valued subband signals with the highband portion to produce the full bandwidth audio signal, the full bandwidth audio including real-valued time domain samples, wherein the apparatus is implemented at least in part with one of more hardware elements, and wherein the linear predictor uses a covariance method of linear predictive coding (LPC).
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2. A method for producing a full bandwidth audio signal having a low band portion and a high band portion, the apparatus comprising:
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decoding an encoded audio signal to produce a time domain decoded audio signal, the time domain decoded audio signal including only the lowband portion; filtering the time domain decoded audio signal with a real-valued, cosine modulated analysis filterbank to produce a plurality of real-valued subband signals; regenerating at least some of the highband portion by copying one or more of the plurality of real-valued subband signals up to the highband portion; identifying subband signals where aliasing created by spectral envelope adjustment of an audio signal may occur based at least in part on a linear predictor applied to at least some of the plurality of real-valued subband signals; estimating an energy of at least some of the plurality of copied real-valued subband signals; modifying a gain to be applied to at least some of the identified subbands signals based at least in part on the estimated energy; and filtering the plurality of real-valued subband signals and the highband portion with a real-valued synthesis filterbank to produce the full bandwidth audio signal, the full bandwidth audio including real-valued time domain samples, wherein the method is implemented at least in part with one of more hardware elements, and wherein the linear predictor uses a covariance method of linear predictive coding (LPC).
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Specification