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Source-channel optimized trellis codes for bitonal image transmission over AWGN channels

机译:用于AWGN通道上的双色调图像传输的源通道优化网格码

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We consider the design of trellis codes for transmission of binary images over additive white Gaussian noise (AWGN) channels. We first model the image as a binary asymmetric Markov source (BAMS) and then design source-channel optimized (SCO) trellis codes for the BAMS and AWGN channel. The SCO codes are shown to be superior to Ungerboeck's codes by approximately 1.1 dB (64-state code, 10/sup -5/ bit error probability), We also show that a simple "mapping conversion" method can be used to improve the performance of Ungerboeck's codes by approximately 0.4 dB (also 64-state code and 10/sup -5/ bit error probability). We compare the proposed SCO system with a traditional tandem system consisting of a Huffman code, a convolutional code, an interleaver, and an Ungerboeck trellis code. The SCO system significantly outperforms the tandem system. Finally, using a facsimile image, we compare the image quality of an SCO code, an Ungerboeck code, and the tandem code, The SCO code yields the best reconstructed image quality at 4-5 dB channel SNR.
机译:我们考虑网格编码的设计,以便在加性白高斯噪声(AWGN)通道上传输二进制图像。我们首先将图像建模为二进制非对称马尔可夫源(BAMS),然后为BAMS和AWGN通道设计源通道优化(SCO)网格代码。 SCO码显示比Ungerboeck码好约1.1 dB(64状态码,10 / sup -5 /误码率),我们还显示了可以使用简单的“映射转换”方法来提高性能可以使Ungerboeck的编码减少约0.4 dB(还有64状态码和10 / sup -5 /误码率)。我们将提出的SCO系统与由Huffman码,卷积码,交织器和Ungerboeck网格码组成的传统串联系统进行比较。 SCO系统明显优于串联系统。最后,使用传真图像,我们比较了SCO代码,Ungerboeck代码和串联代码的图像质量,SCO代码在4-5 dB的信道SNR下产生了最佳的重构图像质量。

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