DocumentCode :
315811
Title :
Nonuniform threshold trellis coded quantization for image transmission through noisy channels
Author :
Sun, Zhaohui ; Chen, Chang Wen
Author_Institution :
Dept. of Electr. Eng., Rochester Univ., NY, USA
Volume :
2
fYear :
1997
fDate :
9-12 Jun 1997
Firstpage :
1129
Abstract :
We propose a joint source/channel coding scheme to transmit image through binary noisy channels based on 2-D discrete cosine transform (DCT) and nonuniform threshold trellis coded quantization (NUTTCQ). After the discrete cosine transform, the source image is decomposed into several subsources according to the transform coefficient positions, i.e. the same frequency coefficients in different DCT blocks are grouped together as a single subsource. The subsources are modeled by a generalized Gaussian distribution (GGD), and the statistical parameters of the GGDs and channel characteristics are used to construct the scalar codebooks for NUTTCQ at both the encoder and the decoder. The transform coefficients are quantized by these fixed-rate quantizers and transmitted through noisy channels. The steepest descent method and iterative schemes are employed to determine the optimum bit allocation among the subsources subject to the constraints of the average coding rate and allowable maximum bits to each sample. Neighborhood relationship is employed to limit the searching space when a bit is to be allocated to a certain subsource. Simulation results show that the performance is very promising
Keywords :
Gaussian distribution; channel coding; discrete cosine transforms; image coding; iterative methods; noise; quantisation (signal); source coding; telecommunication channels; trellis codes; visual communication; 2D DCT; 2D discrete cosine transform; binary noisy channels; channel characteristics; fixed-rate quantizers; generalized Gaussian distribution; image transmission; iterative schemes; joint source/channel coding scheme; neighborhood relationship; nonuniform threshold trellis coded quantization; optimum bit allocation; scalar codebooks; statistical parameters; steepest descent method; transform coefficient positions; transform coefficient quantization; Bit error rate; Bit rate; Channel coding; Decoding; Discrete cosine transforms; Image coding; Image communication; Image reconstruction; Quantization; Sun;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems, 1997. ISCAS '97., Proceedings of 1997 IEEE International Symposium on
Print_ISBN :
0-7803-3583-X
Type :
conf
DOI :
10.1109/ISCAS.1997.621963
Filename :
621963
Link To Document :
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