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Journal ArticleDOI

Predictive Coding of Speech at Low Bit Rates

Bishnu S. Atal
- 01 Apr 1982 - 
- Vol. 30, Iss: 4, pp 600-614
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TLDR
A new class of speech coders are described which allow one to realize the precise optimum noise spectrum which is crucial to achieving very low bit rates, but also represent the important first step in bridging the gap between waveform coders and vocoders without suffering from their limitations.
Abstract
Predictive coding is a promising approach for speech coding. In this paper, we review the recent work on adaptive predictive coding of speech signals, with particular emphasis on achieving high speech quality at low bit rates (less than 10 kbits/s). Efficient prediction of the redundant structure in speech signals is obviously important for proper functioning of a predictive coder. It is equally important to ensure that the distortion in the coded speech signal be perceptually small. The subjective loudness of quantization noise depends both on the short-time spectrum of the noise and its relation to the short-time spectrum of the Speech signal. The noise in the formant regions is partially masked by the speech signal itself. This masking of quantization noise by speech signal allows one to use low bit rates while maintaining high speech quality. This paper will present generalizations of predictive coding for minimizing subjective distortion in the reconstructed speech signal at the receiver. The quantizer in predictive coders quantizes its input on a sample-by-sample basis. Such sample-by-sample (instantaneous) quantization creates difficulty in realizing an arbitrary noise spectrum, particularly at low bit rates. We will describe a new class of speech coders in this paper which could be considered to be a generalization of the predictive coder. These new coders not only allow one to realize the precise optimum noise spectrum which is crucial to achieving very low bit rates, but also represent the important first step in bridging the gap between waveform coders and vocoders without suffering from their limitations.

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Citations
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Proceedings ArticleDOI

Innovation coding with a cross-correlated quantization noise model

TL;DR: Computer simulations and informal listening tests indicate that the incorporation of a cross-correlated quantization noise model yields an improvement in both SNR and perceptual quality when compared to a uncorrelated noise model.
Proceedings ArticleDOI

Design of a medium rate linear-predictive speech coder for digital portable radio communications

TL;DR: Results show that the 16 kb/s speech-coding algorithm eliminates the loud and annoying pops and pings arising from errors in the critical parameters, and replaces them with subjectively more preferable silence or low-level buzzes.

Pitch Modelling for Speech Coding at 4.8 kbitsls

TL;DR: The first new approach in this work is to use a pseudo-three-tap pitch filter with one or two degrees of freedom of the predictor coefficients, which gives a better quality reconstructed speech and also a more desirable frequency response than a one-Tap pitch prediction filter.

Low Bit Rate Transparent Audio Compression using

TL;DR: Experiments suggest that the proposed adaptive wavelet selection procedure by itself can achieve almost transparent coding of monophonic compact disk (CD) quality signals at bit rates of 64-70 kilobits per second (kb/s).
References
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Journal ArticleDOI

Speech analysis and synthesis by linear prediction of the speech wave.

TL;DR: Application of this method for efficient transmission and storage of speech signals as well as procedures for determining other speechcharacteristics, such as formant frequencies and bandwidths, the spectral envelope, and the autocorrelation function, are discussed.
Journal ArticleDOI

Predictive coding--I

TL;DR: Part II will give the mathematical criterion for the best predictor for use in the predictive coding of particular messages, will give examples of such messages, and will show that the error term which is transmitted in predictive coding may always be coded efficiently.
Journal ArticleDOI

Optimizing digital speech coders by exploiting masking properties of the human ear

TL;DR: New results of masking and loudness reduction of noise are reported and the design principles of speech coding systems exploiting auditory masking are described.
Journal ArticleDOI

Predictive coding of speech signals and subjective error criteria

TL;DR: Improved speech quality is obtained by efficient removal of formant and pitch-related redundant structure of speech before quantizing, and by effective masking of the quantizer noise by the speech signal.
Journal ArticleDOI

Adaptive predictive coding of speech signals

TL;DR: Preliminary studies suggest that the binary difference signal and the predictor parameters together can be transmitted at approximately 10 kilobits/second which is several times less than the bit rate required for log-PCM encoding with comparable speech quality.