DocumentCode :
1239847
Title :
Entropy-constrained polar quantization and its application to audio coding
Author :
Vafin, Renat ; Kleijn, W. Bastiaan
Author_Institution :
Dept. of Signals, R. Inst. of Technol., Stockholm, Sweden
Volume :
13
Issue :
2
fYear :
2005
fDate :
3/1/2005 12:00:00 AM
Firstpage :
220
Lastpage :
232
Abstract :
In this work, we present a new method for quantization of sinusoidal amplitudes and phases, and apply the method to sinusoidal coding of speech and audio signals. The method is based on unrestricted polar quantization, where phase quantization accuracy depends on amplitude. Amplitude and phase quantizers are derived under an entropy (average rate) constraint using high-rate assumptions. First, we derive optimal quantizers for one sinusoid and a mean-squared error distortion measure. We provide a detailed analysis of entropy-constrained unrestricted polar quantization, showing its high performance and practicality even at low rates. Second, we find optimal quantizers for a set of sinusoids that model a short segment of an audio signal. The optimization is performed using a weighted error measure that can account for the masking effect in the human auditory system. We find the optimal rate distribution between sinusoids, as well as the corresponding optimal amplitude and phase quantizers, based on the perceptual importance of sinusoids defined by masking. The new method is used in an audio-coding application and is shown to significantly outperform a conventional sinusoidal quantization method where phase quantization accuracy is identical for all sinusoids.
Keywords :
audio coding; distortion; entropy; hearing; mean square error methods; optimisation; quantisation (signal); speech coding; amplitude quantizer; audio coding; entropy-constrained unrestricted polar quantization; human auditory system; mean-squared error distortion; optimal quantizer; optimal rate distribution; phase quantization accuracy; sinusoidal amplitude; speech coding; speech signal; weighted error measure; Audio coding; Auditory system; Distortion measurement; Entropy; Humans; Performance analysis; Performance evaluation; Quantization; Speech coding; Weight measurement; Audio coding; high-rate theory; quantization; sinusoidal coding; unrestricted polar quantization;
fLanguage :
English
Journal_Title :
Speech and Audio Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6676
Type :
jour
DOI :
10.1109/TSA.2004.840942
Filename :
1395967
Link To Document :
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