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Network Performance for Cascaded Dispersion-Free Slicers

机译:级联无色散切片机的网络性能

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摘要

The impact of cascaded spectral Slicers on network performance is investigated in this paper. For a dispersive spectral Slicer, its dispersion is inversely proportional to the square of its channel spacing. When many narrow-band spectral Slicers are cascaded together, the total dispersion can cause significant penalty on system performance. We demonstrated the deleterious effects on system performance caused by the dispersion of cascaded spectral Slicers. To solve this problem, we applied a signal processing technique to design theoretically dispersion-free spectral Slicers. The design principle and simulation results of dispersion-free spectral Slicers are presented. Based on this signal processing technique, six dispersion-free 50-GHz Slicers were made and cascaded together. The total group delay ripples across spectrum within +-12GHz around center frequencies are less than +-0.8ps, which are much less than the group delay variation of +-14ps within the same bandwidth for dispersive Slicers. The power penalty of cascade dispersion-free Slicers is investigated by deploying them in a 16-channel OC-192 WDM (wavelength-multiplexing division) link. The measurement result shows no noticeable power penalty.
机译:本文研究了级联频谱切片器对网络性能的影响。对于色散光谱切片器,其色散与通道间隔的平方成反比。当许多窄带频谱切片器级联在一起时,总色散会严重影响系统性能。我们证明了级联频谱切片器的色散对系统性能的有害影响。为了解决这个问题,我们应用了一种信号处理技术来设计理论上无色散的频谱切片器。给出了无色散光谱切片机的设计原理和仿真结果。基于这种信号处理技术,制造了六个无色散的50 GHz切片器并将其级联在一起。在中心频率附近,在+ -12GHz范围内,整个频谱上的总群时延波动小于+ -0.8ps,这远远小于色散限幅器在相同带宽内+ -14ps时的群时延变化。通过将级联无色散切片机部署在16通道OC-192 WDM(波分复用)​​链路中,研究了其功率损失。测量结果显示没有明显的功率损失。

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