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Application of Nonbinary LDPC Cycle Codes to MIMO Channels

机译:非二进制LDPC周期码在MIMO信道中的应用

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In this paper, we investigate the application of nonbinary low-density parity-check (LDPC) cycle codes over Galois field GF(q) to multiple-input multiple-output (MIMO) channels. Two types of LDPC coded systems that employ either joint or separate MIMO detection and channel decoding are considered, depending on the size of the Galois field and the modulation choice. We construct a special class of nonbinary LDPC cycle codes called the parallel sparse encodable (PSE) codes. The PSE code, consisting of a quasi-cyclic (QC) LDPC cycle code and a simple tree code, has the attractive feature that it is not only linearly encodable, but also allows parallel encoding which can reduce the encoding time significantly. We provide a systematic comparison between nonbinary coded systems and binary coded systems in both performance and complexity. Our results show that the proposed nonbinary system employing the PSE code outperforms not only the binary LDPC code specified in the 802.16e standard, but also the optimized binary LDPC code obtained using the EXIT chart methods. Through a detailed complexity analysis, we conclude that for the MIMO channel considered, the nonbinary coded systems achieve a superior performance at a receiver complexity that is comparable to that of the binary systems.
机译:在本文中,我们研究了Galois字段GF(q)上的非二进制低密度奇偶校验(LDPC)循环码在多输入多输出(MIMO)信道上的应用。根据伽罗瓦域的大小和调制选择,可以考虑采用联合或单独的MIMO检测和信道解码的两种类型的LDPC编码系统。我们构造一类特殊的非二进制LDPC循环码,称为并行稀疏可编码(PSE)码。由准循环(QC)LDPC循环码和简单树码组成的PSE码具有吸引人的特征,即它不仅可以线性编码,而且允许并行编码,从而可以大大减少编码时间。我们在性能和复杂性方面都对非二进制编码系统和二进制编码系统进行了系统的比较。我们的结果表明,提出的采用PSE代码的非二进制系统不仅性能优于802.16e标准中指定的二进制LDPC代码,而且性能也优于使用EXIT图表方法获得的优化二进制LDPC代码。通过详细的复杂度分析,我们得出结论,对于所考虑的MIMO信道,非二进制编码系统在与二进制系统相当的接收机复杂度上实现了卓越的性能。

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