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Analysis and design of trellis codes optimized for a binary symmetric Markov source with MAP detection

机译:具有MAP检测的二进制对称马尔可夫源优化格形码的分析与设计。

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We consider the problem of transmitting a binary symmetric Markov source (BSMS), over the additive white Gaussian noise (AWGN) channel. The coding technique considered is trellis-coded modulation (TCM), where we utilize decoders which implement the maximum-likelihood (ML) and maximum a posteriori (MAP) criteria. Employing 8-PSK Ungerboeck codes on a BSMS with state transition probability 0.1, we first show that the MAP decoder realizes a 0.8-2.1-dB coding gain over the ML decoder. Motivated by these gains, we consider the design of trellis codes optimized for the BSMS/AWGN/MAP system. An approximate union bound is established for this system. Using this bound, we found codes which exhibit additional 0.4-1.1-dB gains over Ungerboeck codes. Finally, we compare the proposed TCM system with a tandem coding system. At normalized signal-to-noise ratio (SNR) of 10.8 dB and below, the proposed system significantly outperforms the tandem system.
机译:我们考虑在加性白高斯噪声(AWGN)信道上传输二进制对称马尔可夫源(BSMS)的问题。所考虑的编码技术是网格编码调制(TCM),其中我们利用了实现最大似然(ML)和最大后验(MAP)标准的解码器。在状态转移概率为0.1的BSMS上使用8-PSK Ungerboeck码,我们首先表明MAP解码器在ML解码器上实现了0.8-2.1 dB的编码增益。受这些收益的激励,我们考虑针对BSMS / AWGN / MAP系统优化的网格代码设计。为此系统建立了一个近似联合边界。使用此界限,我们发现与Ungerboeck码相比,其代码具有额外的0.4-1.1 dB增益。最后,我们将提出的TCM系统与串联编码系统进行了比较。在归一化的信噪比(SNR)为10.8 dB或更低的情况下,拟议的系统明显优于串联系统。

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