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首页> 外文期刊>Photonics Technology Letters, IEEE >Impact of Nonideal Phase Reference on Soft Decoding of Differentially Encoded Modulation
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Impact of Nonideal Phase Reference on Soft Decoding of Differentially Encoded Modulation

机译:非理想相位参考对差分编码调制软解码的影响

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摘要

The performance of coded modulation schemes based on the concatenation of a forward-error correction (FEC) code and differentially encoded quadrature amplitude modulations (QAMs) in the presence of Wiener phase noise is considered. Log-likelihood ratios, required to perform soft decoding, are first derived for the case in which the phase of the received carrier is assumed to be perfectly known, and then used to obtain the performance for nonideal reference of phase. Simulation results of the post-FEC bit-error rate are presented for a near-Shannon limit low-density parity check code with an overhead of 20%. The performance loss, compared to ideal coherent demodulation, is evaluated for two different linewidths of the phase noise in case of quadrature-phase shift keying and 16-QAM transmission.
机译:考虑了在存在维纳相位噪声的情况下,基于前向纠错(FEC)码和差分编码正交幅度调制(QAM)的级联的编码调制方案的性能。对于假定接收的载波的相位完全已知的情况,首先导出执行软解码所需的对数似然比,然后将其用于获得相位的非理想参考的性能。提出了具有20%开销的近香农极限低密度奇偶校验码的FEC后误码率的仿真结果。在正交相移键控和16-QAM传输的情况下,针对理想的相干解调性能,针对两种不同的相位噪声线宽评估了性能损失。

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