Optimization scheme for complete second-order PMD compensation

Zhang Ruoran, Z. Wenhui, Chen Zhiyong, Wang Huijao, Li Tang-jun, Wu Honggang, Jia Nan, Zhong Kangping
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Abstract

Based on the structure of the three-stage complete second-order polarization mode dispersion (PMD) compensator, the combination of the DIRECT algorithm and the Hooke & Jeeves algorithm is advanced as the optimization scheme for the control parameters of it. The optimization scheme is validated by the simulation of the measurement values of the degree of polarization (DOP) in the optimization process. A 16×10-Gb/s optical time-division-multiplexing (OTDM) transmission system with home-made dynamic polarization mode dispersion (PMD) compensator is demonstrated experimentally.
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完全二阶PMD补偿的优化方案
根据三级完全二阶偏振模色散(PMD)补偿器的结构,提出了DIRECT算法与Hooke & Jeeves算法相结合的控制参数优化方案。通过优化过程中偏振度(DOP)测量值的仿真验证了优化方案的有效性。实验验证了采用国产动态偏振模色散补偿器的16×10-Gb/s光时分复用(OTDM)传输系统。
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