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首页> 外文期刊>Journal of Optical Communications >Simulation-Based Optical Threshold Component Design for Mitigating Four-Wave Mixing Effects in WDM Radio Over Fiber Systems
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Simulation-Based Optical Threshold Component Design for Mitigating Four-Wave Mixing Effects in WDM Radio Over Fiber Systems

机译:基于仿真的光学阈值分量设计,用于减轻WDM无线电系统中的四波混合效应

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摘要

The gigantic demand on high bandwidth and capacity has triggered the need to use the radio over optical fiber (RoF) systems. RoF systems offer several attractive features such as low attenuation loss, large bandwidth, less interference, etc., which can improve the communication system reliability and achieve high data rates. However, the RoF system suffers from linear and nonlinear fiber impairments, which result in signal distortion. Several solutions have been proposed to overcome linear impairments; on the other hand, the nonlinear impairments issue is still a challenging problem in RoF communication systems. Four-wave mixing (FWM) is the most dominating nonlinear impairments that impacts the performance of optical fiber communication systems and the RoF systems as well. In this article, we present a strategy to mitigate the FWM effect in wavelength division multiplexing (WDM) RoF systems. Specifically, we study the effect of FWM under high transmit power levels over long transmission distances. This proposed strategy aligns the optical and radio link parameters to alleviate the FWM effects. To achieve this objective, the impact of WDM RoF system parameters such as wavelength (A,), transmitted power, etc., on system performance is investigated. The main performance metrics are the total signal-to-noise ratio (SNR), optical SNR (OSNR), Q-factor, and bit error rate {BER). Given these metrics, our proposed strategy defines an optical threshold level that applies to the optical threshold component to get rid of the undesired signals generated by the FWM effect.
机译:对高带宽和容量的巨大需求引发了在光纤(ROF)系统上使用无线电的需要。 ROF系统提供了几种有吸引力的特性,如低衰减损耗,带宽大,干扰等,可以提高通信系统可靠性并实现高数据速率。然而,ROF系统遭受线性和非线性纤维损伤,导致信号失真。已经提出了几种解决方案来克服线性损伤;另一方面,非线性障碍问题在ROF通信系统中仍然是一个具有挑战性的问题。四波混合(FWM)是最主要的非线性损伤,影响光纤通信系统和ROF系统的性能。在本文中,我们提出了一种策略来缓解波分复用(WDM)ROF系统中的FWM效果。具体地,我们研究FWM在高传输功率水平下的效果在长传输距离上。这一提出的策略对齐光学和无线电链路参数来缓解FWM效果。为实现这一目标,研究了WDM ROF系统参数的影响,例如波长(A,),传输功率等。主要性能度量是总信噪比(SNR),光学SNR(OSNR),Q系数和误码率{BER)。鉴于这些指标,我们所提出的策略定义了应用于光学阈值分量的光学阈值水平,以摆脱由FWM效果产生的不期望的信号。

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