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Self-Consistent Simulation of Opto-Electronic Circuits Using a Modified Nodal Analysis Formulation

机译:使用修改的节点分析公式对光电子电路进行自洽仿真

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This paper addresses the need for self-consistent simulation of mixed electrical and optical circuits and systems. Drawing on the use of modified nodal analysis (MNA) techniques ubiquitous in circuit simulation, an optical node is formulated which includes the magnitude and phase of the optical signal being simulated. This node consists of two propagating complex envelopes one for the forward direction and the other for the reverse direction. Using this formulation models are developed for a variety of devices including: lasers, photodiodes, multimode fiber, and optical connectors. The formulation allows for definition of multiple optical channels at different carrier frequencies, enables quick simulation of systems with large optical delays and optical interference effects. Several numerical examples are presented in this paper to illustrate the capability of the proposed framework and where practicable the results were compared to commercial simulators. These examples include a multimode fiber optical link, an integrated array of laser sources and a feedback controlled laser source used in a optical link with modulation achieved by the use of an electro-absorption device.
机译:本文提出了对混合电气和光学电路及系统进行自洽仿真的需求。利用电路仿真中普遍使用的改进型节点分析(MNA)技术,制定了一个光节点,其中包括要仿真的光信号的大小和相位。该节点由两个传播的复杂包络组成,一个用于正向,另一个用于反向。使用此公式,可以为各种设备开发模型,包括:激光器,光电二极管,多模光纤和光学连接器。该公式允许在不同的载波频率上定义多个光信道,从而可以快速模拟具有较大光延迟和光干涉效应的系统。本文提供了几个数值示例来说明所提出框架的功能,并在可行的情况下将结果与商用模拟器进行比较。这些示例包括多模光纤链路,激光源的集成阵列以及在光链路中使用的反馈控制激光源,其调制通过使用电吸收设备实现。

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