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Performance analysis of protograph-based low-density parity-check codes with spatial diversity

机译:具有空间分集的基于原型的低密度奇偶校验码的性能分析

摘要

In wireless communications, spatial diversity techniques, such as space-time block code and single-input multiple-output (SIMO), are employed to strengthen the robustness of the transmitted signal against channel fading. This article studies the performance of protograph-based low-density parity-check (LDPC) codes with receive antenna diversity. The authors first propose a modified version of the protograph extrinsic information transfer algorithm and use it for deriving the threshold of the protograph codes in a SIMO system. The authors then calculate the decoding threshold and simulate the bit-error rate (BER) of two protograph codes (accumulate-repeat-by-3-accumulate (AR3A) code and accumulate-repeat-by-4-jagged-accumulate (AR4JA) code), a regular (3,6) LDPC code and two optimised irregular LDPC codes. The results reveal that the irregular codes achieve the best error performance in the low signal-to-noise-ratio (SNR) region and the AR3A code outperforms all other codes in the high-SNR region. Utilising the theoretical analyses and the simulated results, the authors further discuss the effect of the diversity order on the performance of the protograph codes. Accordingly, the AR3A code stands out as a good candidate for wireless communication systems with multiple receive antennas.
机译:在无线通信中,采用空间分集技术(例如空时分组码和单输入多输出(SIMO))来增强传输信号抵抗信道衰落的鲁棒性。本文研究具有接收天线分集的基于原型的低密度奇偶校验(LDPC)码的性能。作者首先提出了原型外在信息传输算法的改进版本,并将其用于在SIMO系统中推导原型代码的阈值。然后,作者计算解码阈值并模拟两个原型码(3累加重复(AR3A)代码和4锯齿累加累加重复)(AR4JA)的误码率(BER)。代码),常规(3,6)LDPC代码和两个优化的不规则LDPC代码。结果表明,不规则码在低信噪比(SNR)区域中实现了最佳的误码性能,而AR3A码的性能优于高SNR区域中的所有其他码。利用理论分析和仿真结果,作者进一步讨论了分集顺序对原型编码性能的影响。因此,对于具有多个接收天线的无线通信系统,AR3A代码是很好的候选者。

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