保护相互耦合的传输线:挑战和解决方案

D. Tziouvaras, H. Altuve, F. Calero
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引用次数: 37

摘要

本文是一篇关于互耦传输线保护的教程。讨论了互耦对地方向元极化量、地距离元到达距离和单端故障定位算法精度的影响。本文提供了瞬时定向过流和接地距离元件的设置指南。详细讨论了传输线互耦是如何引起地距元件过伸或过伸的。讨论了维护过程中对线路两端互耦线路接地对这些因素的影响。本文分析了互耦补偿对线路保护是否有好处。讨论中比较了线路电流差动方案的简易性和优越性。最后,本文研究了双回传输线作为单线运行的情况,并在线路上的相似相位放置了跳线。这种情况通常出现在公用事业公司需要释放一个托架以将额外的线路带入变电站时。保护工程师需要决定在何处安装跳线使两条电路并联,以避免距离元件欠伸。本文对这一问题进行了分析,并就如何解决这一问题提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protecting mutually coupled transmission lines: Challenges and solutions
This paper is a tutorial on the protection of mutually coupled transmission lines. It discusses how mutual coupling affects the polarizing quantities of ground directional elements, the reach of ground distance elements, and the accuracy of single-ended fault locating algorithms. The paper provides settings guidelines for instantaneous directional overcurrent and ground distance elements. It discusses in detail how transmission line mutual coupling causes overreaching or underreaching of ground distance elements. It also discusses the impact on these elements of grounding the mutually coupled line at both line ends during maintenance. The paper analyzes whether mutual coupling compensation offers any benefits to line protection. The ease and benefit of line current differential schemes are contrasted in the discussion. Lastly, the paper examines a case when a double-circuit transmission line is operated as a single circuit with jumpers placed across similar phases along the line. This situation typically arises when the utility company needs to free one of the bays to bring an additional line into the substation. The protection engineer needs to decide where to install jumpers to parallel the two circuits in order to avoid distance element underreaching. The paper provides an analysis of this problem and offers suggestions on how to address it.
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