Analysis of reconfigurable tap changing transformer model through analog emulation

J. C. Jiménez, C. Nwankpa
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引用次数: 4

Abstract

Emulation of power systems is a viable alternative to traditional digital methods as it provides certain advantages such as physically realizable solutions and faster computation times. Accurate analog models of power systems components are required in order to realize an analog computation engine for power systems. Prior research in this field has modeled generators, transmission lines and loads. Other components have significant influence on the power systems, such as tap changing transformers. Effects of tap changing transformers on voltage stability have been a continuing area of research. In this paper, a circuit model design to emulate the behavior of a tap changing transformer is validated. It is important to demonstrate how this reconfigurable analog model may be utilized in load flow studies. Such demonstration is presented by comparing steady-state emulation and simulation results for a test case in which a power system experiences slow gradual changes in load.
通过模拟仿真分析可重构分接变换变压器模型
电力系统仿真是传统数字方法的一种可行的替代方法,因为它具有物理上可实现的解决方案和更快的计算时间等优点。为了实现电力系统模拟计算引擎,需要精确的电力系统部件模拟模型。该领域的先前研究已经对发电机、输电线路和负载进行了建模。其他对电力系统影响较大的部件,如分接变换变压器。分接变压器对电压稳定性的影响一直是研究的热点。本文验证了一种模拟抽头变换变压器行为的电路模型设计。重要的是要证明如何在负荷流研究中利用这种可重构的模拟模型。通过对一个电力系统负荷缓慢变化的测试用例进行稳态仿真和仿真结果的比较,给出了这一论证。
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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