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通过优化比特信道映射提高高阶调制的软前向纠错性能。

Improving soft FEC performance for higher-order modulations via optimized bit channel mappings.

作者信息

Häger Christian, Amat Alexandre Graell I, Brännström Fredrik, Alvarado Alex, Agrell Erik

出版信息

Opt Express. 2014 Jun 16;22(12):14544-58. doi: 10.1364/OE.22.014544.

Abstract

Soft forward error correction with higher-order modulations is often implemented in practice via the pragmatic bit-interleaved coded modulation paradigm, where a single binary code is mapped to a nonbinary modulation. In this paper, we study the optimization of the mapping of the coded bits to the modulation bits for a polarization-multiplexed fiber-optical system without optical inline dispersion compensation. Our focus is on protograph-based low-density parity-check (LDPC) codes which allow for an efficient hardware implementation, suitable for high-speed optical communications. The optimization is applied to the AR4JA protograph family, and further extended to protograph-based spatially coupled LDPC codes assuming a windowed decoder. Full field simulations via the split-step Fourier method are used to verify the analysis. The results show performance gains of up to 0.25 dB, which translate into a possible extension of the transmission reach by roughly up to 8%, without significantly increasing the system complexity.

摘要

在实际应用中,高阶调制的软前向纠错通常通过实用的比特交织编码调制范式来实现,即将单个二进制码映射到非二进制调制。在本文中,我们研究了无光学在线色散补偿的偏振复用光纤光学系统中编码比特到调制比特映射的优化问题。我们重点关注基于原图的低密度奇偶校验(LDPC)码,该码允许高效的硬件实现,适用于高速光通信。该优化应用于AR4JA原图族,并进一步扩展到基于原图的空间耦合LDPC码(假设采用窗口解码器)。通过分步傅里叶方法进行的全场模拟用于验证分析。结果表明性能增益高达0.25 dB,这意味着传输距离可能大致延长8%,而不会显著增加系统复杂度。

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