Field, circuit, and visualization based simulation methodology for passive electronic components

B. Becker, G. Cokkinides, Michael Sechrest
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引用次数: 3

Abstract

A comprehensive approach to simulating multiple aspects of the in-circuit performance of discrete linear passive electronic components is presented. The methodology reveals interactions between the spatially distributed electromagnetic field and the time domain response of the circuit via high-quality interactive visualizations of field and circuit quantities. The simulation environment allows simultaneous viewing of voltage or current waveforms in the circuit elements and spatial distributions of the electric or potential fields inside and outside system components. This modeling methodology integrates several disciplines of simulation technology, such as efficient numerical algorithms for 3D spatial solvers, stable and robust time domain models of nonlinear circuit elements, compact storage and efficient representation of computed data, and high performance visualization methods.
无源电子元件的场、电路和可视化仿真方法
提出了一种综合的方法来模拟离散线性无源电子元件在电路中多个方面的性能。该方法通过高质量的场和电路量的交互式可视化来揭示空间分布的电磁场与电路的时域响应之间的相互作用。仿真环境允许同时查看电路元件中的电压或电流波形以及系统组件内外的电或势场的空间分布。这种建模方法集成了仿真技术的几个学科,如三维空间求解的有效数值算法,非线性电路元件的稳定和鲁棒的时域模型,计算数据的紧凑存储和高效表示,以及高性能的可视化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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