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Numerical Techniques for Different Time Scales in Electric Circuit Simulation

机译:电路仿真中不同时标的数值技术

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摘要

The simulation of integrated circuits demands an increasing amount of computational resources, since systems become more and more complex and parasitic effects are included to a larger extent. However, the number of active elements keeps relatively small: less than 10%. In other settings digital and analog circuits are coupled, which yields systems with largely differing time scales. We will discuss two techniques, which are adapted to those cases. One approach is based on multirate Rosenbrock-Wanner schemes, the other leads to a PDE-model for driven oscillators.
机译:集成电路的仿真需要越来越多的计算资源,因为系统变得越来越复杂,并且寄生效应被更大程度地包括在内。但是,有源元件的数量相对较少:不到10%。在其他设置中,数字电路和模拟电路耦合在一起,从而产生时间尺度差异很大的系统。我们将讨论两种适用于这些情况的技术。一种方法是基于多速率Rosenbrock-Wanner方案的,另一种方法则是针对驱动振荡器的PDE模型。

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