首页> 外文期刊>Optical and quantum electronics >Performance evaluation of N x 40 Gbps CS-RZ and DCS-RZ modulated signals transmitted over single mode fiber based on non-ideal LiNbO3 Mach-Zehnder modulators
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Performance evaluation of N x 40 Gbps CS-RZ and DCS-RZ modulated signals transmitted over single mode fiber based on non-ideal LiNbO3 Mach-Zehnder modulators

机译:基于非理想LiNbO3 Mach-Zehnder调制器的单模光纤上传输的N​​ x 40 Gbps CS-RZ和DCS-RZ调制信号的性能评估

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We investigate the transmission performance of N x 40 Gbps carrier-suppressed return-to-zero (CS-RZ) and duobinary CS-RZ (DCS-RZ) modulated wavelength division multiplexed (WDM) signals over the standard single-mode fiber (SSMF) based on non-ideal Mach-Zehnder (MZ) modulators through numerical simulations. In addition to that, the impact on receiver margin related to the residual chirp due to an asymmetry ratio of modulators as well as the effect of the applied chirp of modulators has been studied. As the asymmetry ratio of modulators is increased, dispersion penalties are increased asymmetrically at around the zero dispersion wavelength for the CS-RZ format. The DCS-RZ modulation format has a symmetric behavior due to different characteristics of the residual chirp of modulators. The receiver margin for the DCS-RZ modulation format is larger than the CS-RZ modulation format above the asymmetry ratio of 0.82 of modulators (extinction ratio of 20 dB) with the optimal Delta lambda(DCF). By controlling the negative/positive applied chirp of the first/second modulator, dispersion penalties can be reduced for both the CS-RZ and DCS-RZ formats. In the DCS-RZ format compared to the CS-RZ format, the effect of the applied chirp of the first modulator is more dominant than that of the second modulator. The simulation results show that the receiver margin is limited by the asymmetry ratio of modulators as well as a deviated wavelength from the zero dispersion wavelength of dispersion compensating fibers (DCF) in order to be fully post-compensated. Dispersion penalties can be reduced with appropriate chirp parameters of two non-ideal modulators.
机译:我们研究了标准单模光纤(SSMF)上N x 40 Gbps载波抑制的归零(CS-RZ)和双二进制CS-RZ(DCS-RZ)调制波分复用(WDM)信号的传输性能)基于非理想的Mach-Zehnder(MZ)调制器,并通过数值模拟得出。除此之外,还研究了由于调制器的不对称比而对与残余线性调频有关的接收机余量的影响以及调制器所施加的线性调频的影响。随着调制器的不对称比增加,对于CS-RZ格式,色散惩罚在零色散波长附近不对称地增加。由于调制器的残留线性调频脉冲的不同特性,DCS-RZ调制格式具有对称行为。 DCS-RZ调制格式的接收器余量大于CS-RZ调制格式,在具有最佳Delta lambda(DCF)的调制器的不对称比为0.82(消光比为20 dB)以上。通过控制第一/第二调制器的负/正线性调频线性调频,可以降低CS-RZ和DCS-RZ格式的色散损失。与CS-RZ格式相比,在DCS-RZ格式中,第一调制器的线性调频比第二调制器的线性调频更重要。仿真结果表明,接收器余量受到调制器的不对称率以及色散补偿光纤(DCF)零色散波长的偏离波长的限制,以便进行完全后补偿。可以使用两个非理想调制器的适当线性调频参数来降低色散损失。

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