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首页> 外文期刊>IEEE Transactions on Circuits and Systems. I, Regular Papers >Multirate Simulations With Simultaneous-Solution Using Direct Integration Methods in a Partitioned Network Environment
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Multirate Simulations With Simultaneous-Solution Using Direct Integration Methods in a Partitioned Network Environment

机译:分区网络环境中使用直接集成方法同时解决方案的多速率仿真

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摘要

Multirate simulation of electric networks exhibiting a wide variety of time constants decreases the simulation runtimes by exploiting the property of circuit latency. The fundamental idea is to use different integration steps for different network subsystems, according to the requirements of accuracy of each subsystem. Programs that exploit circuit latency are usually based on relaxation methods that require iterations among the different subsystems of the original networks. These methods lack the numerical robustness of direct implicit integration methods used in circuit simulators and are not adequate for real-time simulation due to their non-uniform solution times. This paper proposes circuit latency exploitation without iterations making use of the concept of interlinked Multi-Area Thevenin Equivalents (MATE). Results are presented showing the efficiency and accuracy of the method
机译:通过利用电路等待时间的特性,具有多种时间常数的电网多速率仿真减少了仿真运行时间。基本思想是根据每个子系统的准确性要求,对不同的网络子系统使用不同的集成步骤。利用电路等待时间的程序通常基于松弛方法,这些方法需要在原始网络的不同子系统之间进行迭代。这些方法缺乏电路仿真器中使用的直接隐式积分方法的数值鲁棒性,并且由于它们的求解时间不均匀,因此不足以用于实时仿真。本文提出了利用互连多区域戴维宁等效物(MATE)的概念进行迭代的电路延迟开发。结果表明该方法的有效性和准确性

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