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LDPC coded DBICM Scheme for Two Way Relay Channel with a Pipeline Decoding Structure

机译:具有流水线解码结构的双向中继信道的LDPC编码DBICM方案

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Low-density parity-check (LDPC) coded bit inter-leaved coded modulation (BICM) is a bandwidth efficient coded modulation scheme and has been successfully employed in the two-way relay channel (TWRC). However, LDPC-BICM scheme does not take the correlations between coded bits from the same modulated symbol into account so that it cannot achieve the maximum a-posteriori (MAP) decoding performance. The later proposed BICM with iterative decoding scheme or the joint channel and physical-layer network coding scheme indeed consider the correlations and improve the error correction performance, but suffer from implementation issues of higher computational complexity and larger latency. In this paper, we propose an LDPC-Delayed BICM (DBICM) scheme to make a successful tradeoff between the performance and the complexity. To this end, we add a delay module between the encoder and the modulator to introduce correlations between codewords. Based on it, we propose a pipeline decoding structure and feed back the decoding result of a codeword to the demodulator as the a priori information for the next codeword. The proposed LDPC-DBICM scheme thus can utilize the correlations without increasing latency too much. We verify the effectiveness of our proposed scheme by theoretical mutual information analysis and finite-length simulations.
机译:低密度奇偶校验(LDPC)编码比特交织编码调制(BICM)是一种带宽高效的编码调制方案,已成功应用于双向中继信道(TWRC)中。但是,LDPC-BICM方案没有考虑来自同一调制符号的编码位之间的相关性,因此它无法实现最大的后验(MAP)解码性能。后来提出的具有迭代解码方案或联合信道和物理层网络编码方案的BICM确实考虑了相关性并提高了纠错性能,但存在计算复杂度高和等待时间长的实现问题。在本文中,我们提出了一种LDPC延迟BICM(DBICM)方案,以在性能和复杂性之间取得成功的折衷。为此,我们在编码器和调制器之间添加了一个延迟模块,以引入码字之间的相关性。基于此,我们提出了流水线解码结构,并将码字的解码结果作为下一个码字的先验信息反馈给解调器。因此,所提出的LDPC-DBICM方案可以利用相关性而不会增加太多等待时间。我们通过理论互信息分析和有限长度仿真验证了我们提出的方案的有效性。

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