利用实时数字模拟器实现一种距离保护方案

S. Krishnamurthy, C. W. Van Wyk
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引用次数: 2

摘要

电气保护在电力传输中起着重要的作用。这仅仅是因为人为控制可能会导致电力传输到最终用户的中断。距离保护是电气保护的组成部分,是保证向终端用户供电连续性的重要保护形式之一。必须采取适当的电气保护措施,以避免对架空线路设备造成损坏,并保持对最终用户供电的连续性。本文研究了远程保护方案开发中的问题表述、算法和方法。本文确定了继电保护的组态整定,介绍了如何利用实时数字模拟器(RTDS)实现对电网的距离保护。在RSCAD软件中对电力系统网络进行了建模,并借助三区R-X图对距离继电器的运行进行了分析。采用一条230 kV、180 km的输电线路,对MHO型距离保护方案进行了实施和试验。并对不同类型的故障事件进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of a distance protection scheme using Real-Time Digital Simulator
Electrical protection plays an important role in the transmission of electricity. This is due to the mere fact that human control can cause disruption in transmitting the electricity to the end-user. Distance protection, which forms part of electrical protection, is one of the most important types of protection to ensure the continuity of supply to the end-users. Proper electrical protection measures are required to avoid the damages on the overhead line equipment and to maintain continuity of the supply to the end users. The paper investigates problem formulation, algorithms, and methods used in the distance protection scheme development. This paper determines the relay configuration settings and describes how to implement the distance protection into the power system network by using the Real-Time Digital Simulator (RTDS). The power system network is modelled in the RSCAD Software and the operation of the distance relay is analysed with the help of the three zones R-X diagram. A 230 kV, 180 km transmission line is used to implement and test the MHO type distance protection scheme. The results are validated for different types of fault events on the various sections of the power system network.
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