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Interleaver Design for Small-Coupling-Length Spatially Coupled Protograph LDPC-Coded BICM Systems Over Wireless Fading Channels

机译:用于无线衰落通道的小型耦合长度空间耦合质要素LDPC编码BICM系统的交织器设计

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摘要

As a class of convolutional error-correction codes (ECCs), spatially coupled protograph low-density parity-check (SC-PLDPC) codes with a sufficiently large coupling length can approach the channel capacity under belief propagation (BP) decoding. However, such codes suffer from poor performance in the case of small coupling lengths. To address the above weakness, we investigate the optimization and analysis of SC-PLDPC-coded bit-interleaved coded modulation (BICM) systems over Rayleigh fading channels. Specially, inspired by the unequal-error-protection (UEP) mechanism of M-ary phase-shift keying/quadrature amplitude modulation (M-PSK/QAM), we put forward a novel interleaver design scheme, referred to as spatial position match mapping (SPMM) scheme. Based on the mutual information (MI) analysis, the proposed interleaver can be used to significantly boost the performance of the SC-PLDPC codes in BICM systems. Furthermore, we propose a block-scheduling protograph-based extrinsic information transfer (BS-PEXIT) algorithm to estimate the convergence performance (i.e, decoding threshold) of the SPMM-aided SC-PLDPC codes in BICM scenarios. Simulation results are well consistent with the theoretical analyses, and show that the proposed SPMM-aided SC-PLDPC-coded BICM systems are superior to the state-of-the-art counterparts.
机译:作为一类卷积误差校正码(ECC),具有足够大的耦合长度的空间耦合的质量奇数奇偶校验(SC-PLDPC)代码可以在信仰传播(BP)解码下接近信道容量。然而,这种代码在小耦合长度的情况下患有差的性能。为了解决上述弱点,我们研究了Rayleigh衰落通道的SC-PLDPC编码位交错编码调制(BICM)系统的优化和分析。特别地,受到M-ARY相移键控/正交调制(M-PSK / QAM)的不等误差保护(UEP)机制,我们提出了一种新颖的交织器设计方案,称为空间位置匹配映射(SPMM)计划。基于互信息(MI)分析,所提出的交织器可用于显着提高BICM系统中SC-PLDPC码的性能。此外,我们提出了一种基于块调度的基于质量图的基于物质图的外在信息传输(BS-PEXIT)算法,以估计BICM场景中的SPMM辅助SC-PLDPC代码的收敛性能(即解码阈值)。仿真结果与理论分析很好,并表明所提出的SPMM辅助SC-PLDPC编码BICM系统优于最先进的同行。

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