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Two Stage Extended Kalman Filtering for Joint Compensation of Frequency Offset, Linear and Nonlinear Phase Noise and Amplitude Noise in Coherent QAM Systems

机译:两个阶段扩展卡尔曼滤波,用于联合补偿频率偏移,线性和非线性相位噪声和相干QAM系统中的振幅噪声

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We investigate our proposed two stage extended Kalman filtering (EKF) technique for the joint tracking of frequency offset (FO), laser phase noise, fiber nonlinearity as well as amplitude noise. The EKF employed in the first stage coarsely compensates the FO using a set of training data symbols. In the second stage, the employed EKF accomplishes the task of compensating the residual FO, phase noise arising from laser linewidth, fiber nonlinear effects along with simultaneous amplitude noise mitigation. The transmission performance of the proposed two stage EKF has been verified through numerical simulations on polarization multiplexed (PM) 16-quadrature amplitude modulation (QAM) system operating at 28 Gbaud. The results prove that the proposed technique is well tolerant towards the impairments of FO, linear and nonlinear phase noise and amplitude noise even up to ≈3000 km of standard single mode fiber (SSMF) transmission at a launch power of 3 dBm, giving a bit error rate (BER) of ≈2.4e-2 which is the 20% soft decision forward error correction (SD-FEC) threshold. Furthermore, the proposed two stage EKF outperforms a similar two stage approach implemented using linear Kalman filter (LKF) with improved BER.
机译:我们研究我们所提出的两个阶段的扩展卡尔曼滤波(EKF)技术对于偏移频率的关节跟踪(FO),激光相位噪声,光纤非线性以及振幅噪声。在第一阶段中采用的使用EKF一组训练数据符号的粗略地补偿的FO。在第二阶段中,所采用的EKF完成补偿残留FO,相位噪声由激光线宽,具有同时振幅噪声减轻沿光纤非线性效应引起的任务。的传输性能提出了两个阶段EKF已经通过上偏振数值模拟验证复用(PM)16正交幅度调制(QAM)系统的操作在28波特。结果证明,所提出的技术是公朝FO,线性和非线性相位噪声的损伤耐受性,并在3 dBm的发射功率噪声振幅甚至高达标准单模光纤(SSMF)传输的≈3000公里,给人一种位≈2.4e-2的错误率(BER),它是20%的软判定前向纠错(SD-FEC)的阈值。此外,所提出的两个阶段EKF优于使用线性卡尔曼滤波器(LKF)具有改善的BER实现的类似的双阶段方法。

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