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Performance of multilevel modulation formats in 92 Gb/s systems in the presence of PMD and nonlinear effects

机译:在存在PMD和非线性效应的情况下,92 Gb / s系统中多级调制格式的性能

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We simulated two multilevel modulation formats in optical fiber systems in the presence of varying polarization mode dispersion (PMD) and fiber nonlinearities. Carrier suppressed return-to-zero differential quadrature phase shift keying (CSRZ-DQPSK) and polarization shift keying (PolSK) formats are simulated. The maximum data rate used in the system is 92 Gb/s and the length of the fiber is kept fixed at 100 km. Dispersion compensated standard communication fiber models are used in the simulations. Monte Carlo method is used for the simulation where the PMD coefficients are varied from 0 to 2 ps/sqrt(km). For simulating nonlinear coefficients, 0.1 and 1.0 1/W/km are used for the low and high nonlinearities respectively. The performances of the modulating formats are compared in terms of bit error rate (BER). The results show that the PolSK system possesses better PMD tolerance in the presence of nonlinearities.
机译:在存在变化的偏振模色散(PMD)和光纤非线性的情况下,我们在光纤系统中模拟了两种多级调制格式。模拟了载波抑制归零差分正交相移键控(CSRZ-DQPSK)和极化移相键控(PolSK)格式。系统中使用的最大数据速率为92 Gb / s,光纤长度保持固定为100 km。仿真中使用了色散补偿的标准通信光纤模型。蒙特卡罗方法用于仿真,其中PMD系数在0到2 ps / sqrt(km)之间变化。为了模拟非线性系数,分别将0.1和1.0 1 / W / km用于低和高非线性。根据误码率(BER)比较调制格式的性能。结果表明,在存在非线性的情况下,PolSK系统具有更好的PMD容限。

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