论文标题
基于概率形状的16 QAM的地图估计,修改的QPSK分区算法
Modified QPSK Partition Algorithm Based on MAP Estimation for Probabilistically-Shaped 16-QAM
论文作者
论文摘要
研究概率塑形(PS)是一种接近香农限制的潜在技术。但是,已经证明,专为统一分布而设计的常规载体相回收(CPR)算法可能在PS系统中受到额外的惩罚。在本文中,我们发现QPSK分区算法的性能在实现PS时退化。为了解决此问题,提出了一个经过修改的QPSK分区算法,该算法可以共同优化振幅决策阈值和滤波器权重,其中决策阈值的优化基于最大后验概率(MAP)估计。与通常使用欧几里得距离度量的常规决策方法不同,基于地图的决策引入了接收信号的统计特征以获得准确的振幅分区。此外,针对不同的决策阈值进行了过滤重量,以增强ASE诱导的相位噪声的公差。我们验证了在56 GBAUD PS 16- ARY正交振幅调制(16-QAM)系统中所提出的算法的可行性。提出的算法将相位噪声估计的误差降低了近一半。与常规的QPSK分区相比,所提出的算法可以使用理论互信息(MI)缩小差距,超过0.1位/符号。信噪比(SNR)分别从8 dB增加到10 dB,通道容量增加了4.2%,4.3%和3.6%。这些观察结果表明,所提出的算法是减轻PS系统中QPSK分区算法的惩罚的有前途的方法。
Probabilistic shaping (PS) is investigated as a potential technique to approach the Shannon limit. However, it has been proved that conventional carrier phase recovery (CPR) algorithm designed for uniform distribution may have extra penalty in PS systems. In this paper, we find that the performance of QPSK partition algorithm is degenerated when PS is implemented. To solve this issue, a modified QPSK partition algorithm that jointly optimizes the amplitude decision threshold and filter weight is proposed, where the optimization of decision threshold is based on maximum a posterior probability (MAP) estimation. Different from the conventional decision methods which commonly use Euclidean distance metric, the MAP-based decision introduces the statistical characteristics of the received signals to obtain an accurate amplitude partition. In addition, the filter weight is optimized for different decision thresholds to enhance the tolerance of ASE-induced phase noise. We verify the feasibility of the proposed algorithm in a 56 GBaud PS 16-ary quadrature amplitude modulation (16-QAM) system. The proposed algorithm reduces the error of phase noise estimation by nearly half. Compared with conventional QPSK partition, the proposed algorithm could narrow the gap with theoretical mutual information (MI) by more than 0.1 bit/symbol. The channel capacity is increased by 4.2%, 4.3% and 3.6% with signal-to-noise ratio (SNR) from 8 dB to 10 dB respectively. These observations show that the proposed algorithm is a promising method to relieve the penalty of QPSK partition algorithm in PS systems.