时变相量传输线的模拟仿真

A. S. Leger, C. Nwankpa
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引用次数: 1

摘要

在电力系统分析中,为了简化和加快计算速度,往往忽略了电网的动态特性。这种假设可以通过模拟计算来减轻,而不需要花费计算时间。与数字计算相比,模拟计算展示了物理上可实现的解决方案和显着更快的计算时间。然而,需要精确的电力系统组件模拟模型。本文重点研究了含时变相量的模拟传输线模型的开发。更具体地说,该模型是针对先前提出的模拟电力系统仿真方法而设计的。先前对这种方法的研究主要集中在传输线的静态表示上。本文提出的动态模型是对以往工作的自然延伸,可以更准确地分析电力系统的稳定性。该模型在模拟仿真框架内开发,并通过PSpice软件中的模拟行为建模进行了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analog emulation of transmission lines with time-varying phasors
Power System network dynamics are often ignored in power system analysis in order to simplify and speed up calculations. Such assumptions can be alleviated with no cost in computation time using analog computation. Analog computation exhibits physically realizable solutions and significantly faster computation times as compared to digital. However, accurate analog models of power system components are required. This paper focuses on the development of an analog transmission line model incorporating time-varying phasors. More specifically, this model was designed for a previously proposed method of analog power system emulation. Prior research with this method has focused on a static representation of transmission lines. The dynamic model, proposed here, is a natural extension of previous work and allows for more accurate power system stability analysis. The model is developed within an analog emulation framework, and verified with simulation via analog behavior modeling in PSpice software.
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