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Proceedings ArticleDOI

The critical band coder--Digital encoding of speech signals based on the perceptual requirements of the auditory system

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TLDR
The development of a digital encoding system designed to exploit the limited detection ability of the auditory system is described, dynamically shaping the encoding error spectrum as a function of the input speech signal, the error is masked by the speech.
Abstract
The development of a digital encoding system designed to exploit the limited detection ability of the auditory system is described. By dynamically shaping the encoding error spectrum as a function of the input speech signal, the error is masked by the speech. Psychoacoustic experiments and results from the literature provide a basis for determining the system parameters that ensure that the error is inaudible. The encoder is a multi-channel system, each channel approximately of critical bandwidth. The input signal is filtered into 17 frequency channels via the quadrature mirror filter technique. Each channel is then coded using block-companding adaptive PCM. For 4.1 kHz bandwidth speech, the differential threshold of the encoding degradation occurs at a bit rate of 34.4 kbps. At 16 kbps, the encoder produces toll quality speech output.

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Citations
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Book

A wavelet tour of signal processing

TL;DR: An introduction to a Transient World and an Approximation Tour of Wavelet Packet and Local Cosine Bases.
Journal ArticleDOI

Exact reconstruction techniques for tree-structured subband coders

TL;DR: It is shown that it is possible to design tree-structured analysis/reconstruction systems which meet the sampling rate condition and which result in exact reconstruction of the input signal.
Journal ArticleDOI

Low bit rate transparent audio compression using adapted wavelets

TL;DR: Experiments indicate 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).
Journal ArticleDOI

Principles of Digital Audio

Patent

Scalable audio coder and decoder

TL;DR: In this paper, the coder/decoder (codec) system of the present invention includes a coder and a decoder, which is capable of performing resolution switching, spectral weighting, digital encoding, and parametric modeling.
References
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Journal ArticleDOI

Quantizing for minimum distortion

TL;DR: This paper discusses the problem of the minimization of the distortion of a signal by a quantizer when the number of output levels of the quantizer is fixed and an algorithm is developed to simplify their numerical solution.
Proceedings ArticleDOI

Application of quadrature mirror filters to split band voice coding schemes

D. Esteban, +1 more
TL;DR: In this article, Quadrature Mirror Filters (QMF) are used to avoid the aliasing effects due to samples decimation when signal is split into sub-bands.
Journal ArticleDOI

Adaptive transform coding of speech signals

TL;DR: The main result is that this adaptive transform coder performs better than all known nonpitch-tracking coding schemes; it extends the range of speech waveform coding to lower bit rates and closes the gap between vocoders and predictive waveform coders.
Journal ArticleDOI

On the masking pattern of a simple auditory stimulus.

TL;DR: In this paper, a narrow band of noise was used to mask pure tones, and it was shown that the amount by which the test signal at the center of the band exceeds the level/cycle of the noise is less than that obtained with a considerably wider band of noises.