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Advanced Coding Techniques: Theory and Practice

机译:高级编码技术:理论与实践

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摘要

In this paper, we compare performance of three classes of forward error correction schemes for 40 Gb/s optical transmission systems. The first class is based on the concatenation of RS codes and this is employed in state-of-the-art fiber-optics communication systems. The second class of codes is the turbo product codes with BCH component codes. The application of these codes in optical communication systems was extensively studied by Sab et al., and Mizuochi et al., and they are being considered for the next generation of long-haul systems. The third class of codes is the low-density parity-check (LDPC) codes that have gained great significance over the past decade. Structured binary LDPC codes, nonbinary LDPC codes, and generalized LDPC codes are considered in this paper. A sophisticated simulator that models all major transmission impairments is used to assess the performance of the error correction schemes. The simulation results show that LDPC codes outperform significantly two other classes of codes.
机译:在本文中,我们比较了40 Gb / s光传输系统的三类前向纠错方案的性能。第一类基于RS码的级联,并在最新的光纤通信系统中使用。第二类代码是带有BCH组件代码的Turbo产品代码。 Sab等人和Mizuochi等人广泛研究了这些代码在光通信系统中的应用,并且正在考虑将其用于下一代长途系统。第三类代码是在过去十年中具有重要意义的低密度奇偶校验(LDPC)代码。本文考虑了结构化的LDPC码,非二进制LDPC码和广义LDPC码。可以对所有主要传输损伤进行建模的复杂仿真器用于评估纠错方案的性能。仿真结果表明,LDPC码的性能明显优于其他两类代码。

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