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Crosstalk-Preventing Scheduling in Single- and Two-Stage AWG-Based Cell Switches

机译:单阶段和两阶段基于AWG的单元开关中的防串扰调度

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Array waveguide grating (AWG)-based optical switching fabrics are receiving increasing attention due to their simplicity and good performance. However, AWGs are affected by coherent crosstalk that can significantly impair system operation when the same wavelength is used simultaneously on several input ports. To permit large port counts in a $N times N$ AWG, a possible solution is to schedule data transmissions across the AWG preventing switch configurations that generate large crosstalk. We study the properties and the existence conditions of switch configurations able to control coherent crosstalk. The presented results show that, by running a properly constrained scheduling algorithm to avoid or minimize crosstalk, it is possible to operate an AWG-based switch with large port counts without significant performance degradation.
机译:基于阵列波导光栅(AWG)的光交换结构由于其简单性和良好的性能而受到越来越多的关注。但是,AWG受相干串扰的影响,当在多个输入端口上同时使用相同波长时,相干串扰会严重损害系统运行。为了允许在$ N乘以N $ AWG中使用大量端口,一种可行的解决方案是安排在AWG上进行数据传输,以防止产生大量串扰的交换机配置。我们研究了能够控制相干串扰的开关配置的特性和存在条件。呈现的结果表明,通过运行适当约束的调度算法来避免或最小化串扰,可以在端口数量众多的情况下操作基于AWG的交换机,而不会显着降低性能。

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