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Adaptive PMD compensation up to second-order in 40Gb/s OTDM optical communication system using two-stage compensator

机译:使用两级补偿器的40GB / S OTDM光通信系统中的自适应PMD补偿达二阶。

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In this paper we report a successful experiment of adaptive polarization mode dispersion (PMD) compensation up to second-order in a 40Gb/s optical time-division multiplexed (OTDM) communication system by using two-stage compensator. In the experiment the PMD monitoring technique based on degree of polarization (DOP) was adopted. And the Particle Swarm Optimization (PSO) algorithm was introduced in adaptive PMD compensation, with the desirable features of fast convergence to the global optimum point for compensation without being trapped in local sub-optima and with good robustness to noise. The comparison was made to estimate the performance effectiveness between PSO algorithms with global neighborhood structure (GPSO) and with local neighborhood structure (LPSO). The LPSO algorithm is shown to be more effective to search global optimum for PMD compensation than GPSO algorithm. The ability of tracking changed PMD using PSO algorithm was also investigated. The two-stage PMD compensator is shown to be effective for both first- and second-order PMD, and the compensator is shown to be bit rate independent. The compensation time is within several hundreds of milliseconds. The response time for recovery from a sharp disturbance is about 11ms.
机译:在本文中,我们通过使用两级补偿器将自适应偏振模式分散(PMD)补偿的自适应偏振模式色散(PMD)补偿的成功实验报告到40GB / S光学时分多路复用(OTDM)通信系统中的第二阶。在实验中,采用了基于极化程度(DOP)的PMD监测技术。并且在自适应PMD补偿中引入了粒子群优化(PSO)算法,具有快速收敛到全局最佳点的所需特征,用于补偿,而不被捕获在本地子项目中,并且具有良好的噪音鲁棒性。对具有全局邻域结构(GPSO)和本地邻域结构(LPSO)的PSO算法之间的性能有效性进行了比较。 LPSO算法显示比GPSO算法更有效地搜索PMD补偿的全局最优。还研究了使用PSO算法跟踪改变的PMD的能力。两个级PMD补偿器显示为第一和二阶PMD都是有效的,并且代码器被示出为与比特率无关。补偿时间在几百毫秒内。从急剧干扰中恢复的响应时间约为11ms。

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