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A two-stage coded modulation scheme based on the 8-QAM signal for optical transmission systems

机译:基于8-QAM信号的光传输系统的两阶段编码调制方案

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A novel two-stage coded modulation (TSCM) scheme based on the 8-QAM signal is proposed. In the proposed scheme, three bits in the same symbol are protected by different codes in order to fully utilize 8-QAM’s ring characteristic and obtain the more coding gain in optical transmission systems. The two simulation experiments with two groups of quasi-cyclic low-density parity-check (QC-LDPC) codes are performed. The simulation results show that the proposed scheme, compared with the traditional parallel independent scheme which has similar code-rate, can bring about 0.5dB and 0.1dB net coding gain (NCG) respectively at the bit error ratio (BER) of 10-6. In addition, the applied QC-LDPC codes need less times of iterations and have low error floor. The proposed scheme can implement the transmission without time delay, and the number of addition operations is also only 2/3 of the traditional scheme while calculating the log-likelihood ratio (LLR) algorithm of a symbol. Therefore, the proposed TSCM scheme combined with the QC-LDPC codes has the better comprehensive performance and can better be suitable for high-speed optical transmission systems.
机译:提出了一种基于8-QAM信号的新型两阶段编码调制(TSCM)方案。在提出的方案中,同一符号中的三个比特受到不同代码的保护,以便充分利用8-QAM的环形特性并在光传输系统中获得更多的编码增益。用两组准循环低密度奇偶校验(QC-LDPC)码进行了两个仿真实验。仿真结果表明,与具有相似码率的传统并行独立方案相比,该方案在误码率(BER)为10-6时可分别带来0.5dB和0.1dB的净编码增益(NCG)。 。另外,所应用的QC-LDPC码需要较少的迭代时间,并且具有较低的错误基底。所提出的方案可以实现无时延的传输,并且在计算符号的对数似然比(LLR)算法时,加法运算的次数也仅为传统方案的2/3。因此,所提出的结合QC-LDPC码的TSCM方案具有更好的综合性能,可以更好地适用于高速光传输系统。

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