通过复杂的向量拟合,通过线性和被动光子电路的宽带参数基带宏建模
Thijs Ullrick1,2,3, Domenico Spina4, Wim Bogaerts5,6
1IDLab, Department of Information Technology, Ghent University-imec, Ghent, Belgium. thijs.ullrick@ugent.be.
Scientific reports
|September 16, 2023
概括
一种新的宏建模技术有效地估计了光子设备在宽带宽的行为. 这种方法保留了物理性质,并使复杂系统能够以各种光学频率进行模拟.
科学领域:
- 光子学和光学 在光子学和光学.
- 计算电磁学 计算机电磁学
- 电路模拟器电路模拟器
背景情况:
- 对被动光子设备和电路的准确建模对于系统设计至关重要.
- 现有的技术可能会在宽带分析或物理性质的保存方面扎.
- 需要参数建模来将设备设计变量与电路性能联系起来.
研究的目的:
- 为被动光子系统引入一种新的宽带参数基带宏建模技术.
- 为了能够有效地估计基带散射表示作为设计变量的函数.
- 为了保证基本的物理性质如因果关系,稳定性和被动性的保存.
主要方法:
- 使用复杂的向量拟合 (CVF) 算法来计算宏模型.
- 采用振幅和频率缩放用于插值,保持物理性质.
- 用普通微分方程 (ODE) 解析器或电路模拟器进行模拟的推导理性CVF模型.
主要成果:
- 该技术有效地估计了被动光子系统的基带散射表示.
- 这种方法保证了因果关系,稳定性和被动性的保存.
- 生成的理性模型与标准的ODE解决器和电路模拟器兼容.
- 时间域模拟在任意光学载波频率上是可行的,支持多波长系统.
结论:
- 拟议的技术为光子设备的宽带参数宏建模提供了一种灵活和有利的方法.
- 它可以对复杂的被动光子系统进行高效和物理一致的模拟.
- 该方法通过允许任意光学载波频率的模拟来促进多波长系统的分析.
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