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Performance of Ring-Resonator Based Optical Backplane in High Capacity Routers

机译:基于高容量路由器的环形谐振器基于光学背板的性能

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The use of architectures that implement optical switching without any need of optoelectronic conversion allows us to overcome the limits imposed by today's electronic backplane, such as power consumption and dissipation, as well as power supply and footprint requirements. We propose a ring-resonator based optical backplanes for router line-card interconnections. In particular we investigate how the feasibility of the architecture is affected by the following parameters: number of line cards, switching-element round-trip losses, frequency drifting due to thermal variations and waveguide-crossing effects. Moreover, to quantify the signal distortions introduced by filtering operations, the noiseless eye diagrams for the different parameter conditions are shown in case of an on-off keying non-return-to-zero input signal at 10 Gb/s.
机译:使用实现光学切换而无需任何光电转换的架构允许我们克服当今电子背板所施加的限制,例如功耗和耗散,以及电源和足迹要求。我们提出了一种基于环形谐振器的光学背板,用于路由器线卡互连。特别是我们调查架构的可行性如何受以下参数的影响:线卡数量,开关元件往返损耗,由于热变化和波导交叉效果导致的频率漂移。此外,为了量化通过滤波操作引入的信号失真,在10GB / s处的ON-OFF键控非返回零输入信号的情况下,示出了不同参数条件的无噪声眼图。

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