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Robust and Low-Complexity Principal Component-Based Phase Estimation Algorithm for Probabilistically Shaped Square-QAM Systems

机译:基于稳健和低复杂性主成分的概率形状QAM系统的阶段估计算法

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摘要

An optimized principal component-based phase estimation (OPCPE) algorithm is proposed for probabilistically shaped (PS) square-quadrature amplitude modulation (QAM) systems. The optimization method is based on mirroring and partially scaling the received constellation. Numerical simulation validation shows that the proposed phase recovery algorithm outperforms the well-known blind phase search (BPS) algorithm at low signal-to-noise ratio (SNR) and solves the incompatibility between principal component-based phase estimation (PCPE) and PS at high SNR. Its worth mentioning that the proposed algorithm retains the advantages of low cycle slip rate (CSR) and low computational complexity of PCPE. Furthermore, the performance of a hybrid implementation combining the proposed algorithm and BPS is also investigated. When the shaping parameter for a PS-64QAM system is 0.03, by using the proposed simple and hybrid methods, the SNR required to reach the 0.8 normalized generalized mutual information (NGMI) threshold can be reduced by about 0.74 dB and 0.98 dB, respectively, benchmarking the widely used two-stage BPS (2S-BPS) algorithm. To the best of our knowledge, this is the first time to robustly apply PCPE algorithm to PS systems, and the proposed design has stable GMI performance, strong cycle slip tolerance and low computational complexity, which makes it a suitable candidate for practical probabilistically-shaped transmissions.
机译:提出了一种优化的基于基于组分的相位估计(OPCPE)算法,用于概率形状(PS)平方正交幅度调制(QAM)系统。优化方法基于镜像和部分地缩放接收的星座。数值模拟验证表明,所提出的相位恢复算法在低信噪比(SNR)下优于众所周知的盲相检索(BPS)算法,并解决基于主成分的相位估计(PCPE)和PS之间的不相容性高SNR。其值得一提的是,所提出的算法保留了循环滑移速率(CSR)和PCPE的低计算复杂性的优点。此外,还研究了组合所提出的算法和BPS的混合实现的性能。当PS-64QAM系统的成形参数为0.03时,通过使用所提出的简单和混合方法,可以降低0.8归一化广义相互信息(NGMI)阈值所需的SNR分别减少约0.74dB和0.98 dB,基准测试广泛使用的两级BPS(2S-BPS)算法。据我们所知,这是第一次强大地将PCPE算法应用于PS系统,并且该设计具有稳定的GMI性能,强循环滑动公差和低计算复杂性,这使其成为实际概率形状的合适候选者传输。

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