Design, Simulation and Comparison of Synthetic Test Circuits for High Voltage Circuit Breakers

J. Jamnani, S. Kanitkar
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引用次数: 1

Abstract

Development in electrical power transmission system requires the use of circuit breakers with increasing breaking capacity. At present circuit breakers are to be installed on 245 kV to 760 kV power system with short circuit ratings upto 63 kA. To test high voltage CBs, direct testing using the power system or short circuit alternators are not feasible. The testing of high voltage CBs of larger capacity requires very large capacity of testing station. To increase testing plant power is neither an economical nor a very practical solution. Therefore indirect methods of testing are used for testing of large CBs. Synthetic testing is an alternative equivalent method for testing of high voltage circuit breakers and is accepted by the standards. Parallel current injection synthetic testing is the most widely used method for testing of CBs. This paper presents a comprehensive review of TRV rating concepts, standard TRV envelopes, types of synthetic test circuits used for high voltage circuit breakers. Design and simulation of 4-parameters TRV synthetic testing circuits is done by using PSIM simulator. Three different 4-Parameters TRV circuits are simulated for a 245 kV rating circuit breaker for comparison purpose. Design optimization is also done to reduce the energy required by the capacitor banks. The results obtained by using different circuits have been discussed in the paper. The comparison is made on aspects of equivalence, operation, required capacitive energy and applicability.
高压断路器综合测试电路的设计、仿真与比较
电力传输系统的发展要求使用分断能力越来越大的断路器。目前,断路器安装在245千伏至760千伏的电力系统上,短路额定值高达63千伏。为了测试高压断路器,直接使用电力系统或短路交流发电机进行测试是不可行的。大容量高压CBs的试验对试验台的容量要求非常大。增加测试装置的功率既不经济,也不是一个非常实用的解决方案。因此,间接测试方法用于测试大型CBs。综合试验是高压断路器试验的另一种等效方法,已被标准所接受。并联电流注入综合测试是目前应用最广泛的测试方法。本文全面介绍了TRV额定值概念、标准TRV包络、用于高压断路器的综合测试电路类型。利用PSIM模拟器对四参数TRV综合测试电路进行了设计与仿真。为了比较,对245 kV额定断路器进行了三种不同的四参数TRV电路的仿真。还进行了设计优化,以减少电容器组所需的能量。本文讨论了采用不同电路所得到的结果。从等效性、运算性、所需电容能量和适用性等方面进行了比较。
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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