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Electronic Equalization of FBG Phase Ripple Distortions in 43 Gb/s WDM Systems

机译:43 GB / S WDM系统中FBG相位纹波扭曲的电子均衡

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Within this paper we investigate in a first step the transmission performance for a 43-Gb/s wavelength division multiplex (WDM) system with channelized and broadband fiber Bragg gratings (FBGs) for dispersion compensation by statistical simulations. The results demonstrate the feasibility and limitations of replacing dispersion compensating fiber (DCF) in 43 Gb/s systems by FBGs and of upgrading a 10.7 Gb/s system with FBG dispersion compensation to 43 Gb/s. Phase ripple distortions and the narrow band filtering of the channelized FBG extend the OSNR requirements or lead to reduced possible transmission lengths. To overcome these limitations, linear feed-forward-equalizers (FFE), combinations of feed-forward and decision-feedback (FFE-DFE) equalizers, and nonlinear FFE-DFEs are introduced. We show that the OSNR penalty due to filtering and ripples can be significantly reduced by using nonlinear equalizers. Investigated modulation formats are NRZ-ASK (amplitude shift keying with non-return-to-zero pulse shape) and optical duobinary (ODB).
机译:在本文中,我们在第一步中调查了具有信道化和宽带光纤布拉格光栅(FBG)的43-GB / S波分复用(WDM)系统的传输性能,以通过统计模拟分散补偿。结果证明了FBG替代43 GB / S系统中的分散补偿光纤(DCF)的可行性和限制,并通过FBG分散补偿升级10.7 GB / S系统至43 GB / s。相位纹波扭曲和信道化FBG的窄带滤波延长了OSNR要求或导致可能的传输长度降低。为了克服这些限制,引入了线性馈电转发 - 均衡器(FFE),前馈和决策反馈(FFE-DFE)均衡器和非线性FFE-DFE的组合。我们表明,通过使用非线性均衡器,可以显着降低由于过滤和涟漪引起的OSNR罚化。调查的调制格式是NRZ-ASK(幅度移位键控键控,与非返回到零脉冲形状)和光学传单(ODB)。

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