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Adaptive equalization combined with maximum likelihood decoder for trellis code modulation based on high-order QAM signals

机译:基于高阶QAM信号的自适应均衡与最大似然解码器组合用于网格码调制

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摘要

Laser phase noise remarkably degrades the bit-error-ratio (BER) characteristics of Trellis code modulation (TCM) signals based on high-order QAM constellation. In order to suppress phase noise, we propose to combine adaptive equalization with maximum likelihood estimation for TCM decoding. With our scheme, we experimentally evaluate the BER characteristics of dual-polarization 64QAM-based TCM optical signals. The results suggests that our scheme is effective to suppress the BER degradation due to phase noise for TCM signals based on high-order-QAM constellation.
机译:激光相位噪声会基于高阶QAM星座显着降低网格编码调制(TCM)信号的误码率(BER)特性。为了抑制相位噪声,我们建议将自适应均衡与最大似然估计相结合以进行TCM解码。通过我们的方案,我们通过实验评估了基于双偏振64QAM的TCM光信号的BER特性。结果表明,我们的方案可以有效地抑制基于高阶QAM星座图的TCM信号由于相位噪声引起的BER下降。

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