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Four Wave Mixing Suppression in Optical Systems Through System Parameters Optimization

机译:通过优化系统参数来抑制光学系统中的四波混频

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Four-Wave Mixing (FWM) is defined as an undesirable nonlinear effect that gives significantly degraded system performance and is expected to become the major drawback for optical communication systems. This study presents a method to suppress the FWM through system parameters optimization. The study was conducted on four different types of optical fiber, i.e., Single-Mode Fiber (SMF), Dispersion Shifted Fiber (DSF), Non-Zero Dispersion Fiber (NZDF) and Non-Zero Dispersion Shifted Fiber (NZDSF). The results proved that the optimization of the parameters can reduce the effect of FWM in optical fiber link. It showed that a maximum FWM power level was observed with DSF and a minimum FWM power level with SMF with little effect on the optical link channel. Moreover, the results demonstrated that the SMF type with reduced the input power and increased channel spacing decreases the effect of FWM power materialization to a minimum value with reduction rate of 22 dB in compared to varying other parameters. In the case of system performance with the optimization of (decreasing the input power and increasing channel spacing), the BER was 1.90′10-25 at received power of 7 dBm. However, in the presence of optimization (increasing both effective area and channel spacing) the BER was found to be less than 2.84′10-20 at same received power.
机译:四波混频(FWM)被定义为一种不希望出现的非线性效应,它会严重降低系统性能,并有望成为光通信系统的主要缺点。这项研究提出了一种通过系统参数优化来抑制FWM的方法。该研究是针对四种不同类型的光纤进行的,即单模光纤(SMF),色散位移光纤(DSF),非零色散光纤(NZDF)和非零色散位移光纤(NZDSF)。结果表明,参数的优化可以降低光纤链路中的FWM的影响。结果表明,使用DSF观察到最大FWM功率水平,使用SMF观察到最小FWM功率水平,而对光链路通道的影响很小。此外,结果表明,与改变其他参数相比,具有降低的输入功率和增加的通道间隔的SMF类型将FWM功率实现的影响降低到最小值,降低率为22 dB。在优化系统性能的情况下(减小输入功率并增加信道间隔),在7 dBm的接收功率下,BER为1.90'10-25。但是,在存在优化(增加有效面积和通道间隔)的情况下,发现在相同接收功率下,BER小于2.84'10-20。

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