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Design of Semi-Algebraic Low-Density Parity-Check (SA-LDPC) Codes for Multilevel Coded Modulation

机译:用于多级编码调制的半代数低密度奇偶校验(SA-LDPC)码的设计

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摘要

In this paper, semi-algebraic Low-density parity-check (SA-LDPC) codes are proposed for the multilevel coded modulation system. We optimize code parameters of LDPC codes according to the rate of each level by Gaussian approximation. Iterative multistage decoding (IMSD) scheme is adopted to get the significant improvement. System performance with Ungerboeck partitioning (UP) and mixed partitioning (MP) for 8PSK is evaluated respectively over additive white Gaussian noise (AWGN) channels. Many results are presented in this paper, they indicate that in terms of the tradeoff between hardware complexity and system performance, constructed multilevel coded modulation system based on optimized LDPC codes, capacity rule and MP is a good choice for the bandwidth efficient transmission over AWGN channels.
机译:本文针对多级编码调制系统,提出了半代数低密度奇偶校验码(SA-LDPC)。我们通过高斯近似根据每个级别的速率优化LDPC码的代码参数。采用迭代多级解码(IMSD)方案可以显着提高性能。分别在加性高斯白噪声(AWGN)通道上评估8PSK的Ungerboeck分区(UP)和混合分区(MP)的系统性能。本文给出了许多结果,这些结果表明,就硬件复杂度和系统性能之间的折衷而言,基于优化的LDPC码,容量规则和MP构建的多级编码调制系统是通过AWGN信道进行带宽高效传输的不错选择。 。

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