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Maximum Likelihood Sequence Estimation in the Presence of Timing Misalignment and Polarization Mode Dispersion in Optically Amplified Return-to-Zero Systems

机译:在光放大返回零系统中存在定时错位和偏振模式色散存在的最大似然序列估计

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We investigate the performance of maximum likelihood sequence estimation (MLSE) receiver in the presence of the impairments from both the pulse carver-data modulator timing misalignment (TM) and polarization mode dispersion (PMD) in optically amplified return-to-zero (RZ) systems. RZ modulation format is commonly used in long-haul wavelength-division multiplexing transmission systems and the dominating noise source in those systems is amplified spontaneous emission (ASE) noise, which is signal dependent and requires special study when direct detection is employed. In this paper, based on the bit-to-bit error probability estimation using Karhunen-Loeve (KL) expansion and decorrelation of noise components, we use the steepest descent method to obtain sequence-to-sequence error probability and achieve the performance evaluation of MLSE receiver with arbitrary input signal pulse shape, optical filtering and electrical filtering taken into consideration. Monte Carlo simulations of a 10-Gb/s RZ system are demonstrated and agree with the theory well. The results show that the power penalty induced by TM and PMD can be effectively reduced by MLSE receiver, which thus validates its capability to enhance tolerance to both TM and PMD with shared electrical devices.
机译:我们在光放大返回到零(RZ)中,在脉冲Carver-Data调制器时序未对准(TM)和偏振模式色散(PMD)中存在损伤中的最大似然序列估计(MLSE)接收器的性能。系统。 RZ调制格式通常用于长途波分复用传输系统,并且这些系统中的主导噪声源被放大了自发发射(ASE)噪声,其是信号依赖性并且需要在采用直接检测时进行特殊研究。在本文中,基于使用Karhunen-Loeve(KL)扩展和噪声分量去相关性的比特误差概率估计,我们使用最陡的脱刻法来获得序列到序列误差概率并实现性能评估具有任意输入信号脉冲形状的MLSE接收器,考虑光学滤波和电滤波。据证明了10 GB / S RZ系统的蒙特卡罗模拟,并与理论井同意。结果表明,MLSE接收器可以有效地减少由TM和PMD引起的功率损失,从而验证其具有共用电气设备的增强TM和PMD公差的能力。

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