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Study on Ameliorating the FEC Coding Techniques in Current High-rate Optical Transmission Systems

机译:当前高速率光传输系统中改善FEC编码技术的研究

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In this paper, the three ameliorated new coding schemes of the Super-FEC (Forward Error Correction) concatenated-codes (namely, the inner-outer concatenated-code, the parallel concatenated-code and the successive concatenated-code with interleaving) are proposed after the development trend of high-rate optical transmission systems and the defects of the FEC codes in the current optical transmission systems have been analyzed. The system simulation of the inner-outer concatenated-codes is implemented and the schemes of encoding/decoding the parallel concatenated-codes are proposed. Furthermore, the two successive concatenated-codes with interleaving of the RS(255,239)+RS(255,239) code and the RS(255, 239)+RS(255, 223) code are simulated, and the analyses for the simulation results show that the two successive concatenated-codes with interleaving, compared with the classic RS (255,239) code and other codes, are a superior code type with the advantages of the better correction error, moderate redundancy and easy realization. And their net coding gains (NCG) are respectively 1.5dB, 2.5dB more than that of the classic RS(255,239) code at the BER (Bit Error Rate) of 10~(-12). At last, based on the ITU-T G.709, the frame format of the new concatenated-code on applying in high-rate optical transmission systems is proposed and designed, this lays a firm foundation in order to design its hardware in future and pioneers a direction in its physical application.
机译:提出了Super-FEC(前向纠错)级联码的三种改进的新编码方案(即内外级联码,并行级联码和带交织的连续级联码)。在分析了高速光传输系统的发展趋势以及目前光传输系统中FEC码的缺陷之后,进行了分析。进行了内外级联码的系统仿真,提出了并行级联码的编解码方案。此外,对两个连续的级联码进行交织,模拟了RS(255,239)+ RS(255,239)码和RS(255,239)+ RS(255,223)码,对模拟结果的分析表明:与经典的RS(255,239)码和其他代码相比,两个交错的连续级联代码是一种优越的代码类型,具有更好的校正错误,适度的冗余性和易于实现的优点。在BER(误码率)为10〜(-12)时,它们的净编码增益(NCG)分别比传统RS(255,239)码高1.5dB,2.5dB。最后,基于ITU-T G.709,提出并设计了适用于高速率光传输系统的新型级联码的帧格式,为今后的硬件设计和开发奠定了坚实的基础。在其物理应用方面开创了一个方向。

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