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Markov model aided decoding for image transmission using soft-decision-feedback

机译:马尔可夫模型辅助解码,使用软决策反馈进行图像传输

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Soft-decision-feedback MAP decoders are developed for joint source/channel decoding (JSCD) which uses the residual redundancy in two-dimensional sources. The source redundancy is described by a second order Markov model which is made available to the receiver for row-by-row decoding, wherein the output for one row is used to aid the decoding of the next row. Performance can be improved by generalizing so as to increase the vertical depth of the decoder. This is called sheet decoding, and entails generalizing trellis decoding of one-dimensional data to trellis decoding of two-dimensional data (2-D). The proposed soft-decision-feedback sheet decoder is based on the Bahl algorithm, and it is compared to a hard-decision-feedback sheet decoder which is based on the Viterbi algorithm. The method is applied to 3-bit DPCM picture transmission over a binary symmetric channel, and it is found that the soft-decision-feedback decoder with vertical depth V performs approximately as well as the hard-decision-feedback decoder with vertical depth V+1. Because the computational requirement of the decoders depends exponentially on the vertical depth, the soft-decision-feedbark decoder offers significant reduction in complexity. For standard monochrome Lena, at a channel bit error rate of 0.05, the V=1 and V=2 soft-decision-feedback decoder JSCD gains in RSNR are 5.0 and 6.3 dB, respectively.
机译:开发了软决策反馈MAP解码器,用于联合源/信道解码(JSCD),它使用二维源中的剩余冗余。源冗余由二阶马尔可夫模型描述,该模型可用于接收器以进行逐行解码,其中用于一行的输出用于辅助下一行的解码。通过泛化可以提高性能,从而增加解码器的垂直深度。这被称为片解码,并且需要将一维数据的网格解码泛化为二维数据(2-D)的网格解码。所提出的软判决反馈表解码器是基于Bahl算法的,并与基于Viterbi算法的硬判决反馈表解码器进行了比较。将该方法应用于二进制对称信道上的3位DPCM图像传输,发现垂直深度为V的软判决反馈解码器的性能与垂直深度为V +的硬判决反馈解码器的性能差不多1。由于解码器的计算要求与垂直深度成指数关系,因此软决策馈送树皮解码器可显着降低复杂度。对于标准单色Lena,在信道误码率为0.05时,RSNR中的V = 1和V = 2软判决反馈解码器JSCD增益分别为5.0和6.3 dB。

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