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Method for crosstalk and power optimization in silicon photonic based switch matrices

机译:基于硅光子的开关矩阵中串扰和功率优化的方法

摘要

Recursive optimization algorithms can be used to determine which idle photonic switching elements to configure in N×N switching fabrics to achieve crosstalk suppression. Different algorithms are used to achieve different levels of optimization. Embodiment full optimization techniques may configure all inactive cells to reduce crosstalk, and consequently may provide the best noise performance and highest power usage. Partial optimizations may configure fewer than all inactive cells to reduce crosstalk, and may provide sub-optimal noise performance at lower power usages. Differential partial optimization algorithms configure inactive cells in different stages of a photonic switching fabric. Fewer than all cells in a given stage may be configured by some algorithms.
机译:递归优化算法可用于确定要在N×N交换结构中配置哪些空闲光子交换元件,以实现串扰抑制。使用不同的算法来实现不同级别的优化。实施例完全优化技术可以配置所有不活动的小区以减少串扰,并因此可以提供最佳的噪声性能和最高的功率使用。部分优化可能会配置少于所有非活动小区的数量,以减少串扰,并且可能会在较低的功率使用情况下提供次佳的噪声性能。差分局部优化算法在光子交换结构的不同阶段配置非活动单元。某些算法可以配置少于给定阶段的所有小区。

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