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Stochastic simulation and robust design optimization of integrated photonic filters

机译:集成光子滤波器的随机仿真和鲁棒设计优化

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摘要

Manufacturing variations are becoming an unavoidable issue in modern fabrication processes; therefore, it is crucial to be able to include stochastic uncertainties in the design phase. In this paper, integrated photonic coupled ring resonator filters are considered as an example of significant interest. The sparsity structure in photonic circuits is exploited to construct a sparse combined generalized polynomial chaos model, which is then used to analyze related statistics and perform robust design optimization. Simulation results show that the optimized circuits are more robust to fabrication process variations and achieve a reduction of 11%–35% in the mean square errors of the 3 dB bandwidth compared to unoptimized nominal designs.
机译:在现代制造工艺中,制造差异已成为不可避免的问题。因此,在设计阶段能够包含随机不确定性至关重要。在本文中,集成光子耦合环形谐振器滤波器被认为是一个令人关注的例子。利用光子电路中的稀疏结构构造了一个稀疏的组合广义多项式混沌模型,然后将其用于分析相关统计数据并进行鲁棒的设计优化。仿真结果表明,与未经优化的标称设计相比,经过优化的电路对于制造工艺的变化更为稳健,并实现了3 dB带宽的均方误差降低11%至35%。

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