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Multistage carrier phase estimation algorithms for phase noise mitigation in 64-quadrature amplitude modulation optical systems

机译:多相载波相位估计算法用于64正交调幅光学系统中的相位噪声抑制

摘要

Two novel low-complexity multi-stage digital feedforward carrier phase estimation (CPE) algorithms for 64-ary quadrature amplitude modulation (QAM) are proposed and analyzed by numerical simulations. The first stage is composed of a Viterbi&Viterbi block, based on either the standard quadrature phase shift keying (QPSK) partitioning algorithm using only Class-1 symbols or a modified QPSK partitioning scheme utilizing both Class-1 and outer most triangle-edge (TE) symbols. The second stage applies the Viterbi&Viterbi algorithm after a 64-QAM-to-QPSK transformation, while the subsequent stages iterate a maximum likelihood estimation (MLE) algorithm for phase estimation. All proposed techniques are characterized by a high tolerance to laser phase noise: an OSNR penalty of 1 dB at bit error rate (BER) of 10−2, the proposed schemes can tolerate a linewidth times symbol duration product equal to 5.6e−5 and 7.1e−5, respectively. At 32 Gbaud, all of the above linewidth requirements can be met using commercial tunable lasers. The proposed schemes achieve a similar linewidth. tolerance with a reduced implementation complexity with respect to algorithms based on the blind phase search (BPS) method
机译:提出了两种新颖的用于64进制正交幅度调制(QAM)的低复杂度多级数字前馈载波相位估计(CPE)算法,并通过数值模拟对其进行了分析。第一阶段由维特比(Viterbi)和维特比(Viterbi)块组成,基于仅使用Class-1符号的标准正交相移键控(QPSK)分区算法,或者使用Class-1和最外侧三角形边缘(TE)的改进的QPSK分区方案符号。第二阶段在64-QAM到QPSK转换之后应用Viterbi&Viterbi算法,而随后的阶段则迭代最大似然估计(MLE)算法进行相位估计。所有提出的技术均具有对激光相位噪声的高容忍度:在10-2的误码率(BER)时,OSNR损失为1 dB,提议的方案可以容忍线宽乘以符号持续时间乘积等于5.6e-5和分别为7.1e-5。在32 Gbaud时,可以使用商用可调谐激光器满足上述所有线宽要求。所提出的方案实现了相似的线宽。相对于基于盲相搜索(BPS)方法的算法而言,具有较低的实现复杂性

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