Complex R-X Diagram for Mho Relay Visualization in ATP/EMTP

V. González-Sánchez, V. Torres-García, N. Solís-Ramos, S. Ramirez-Zavala
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引用次数: 0

Abstract

Overhead transmission lines are probably the electrical component most vulnerable to lightning, short circuits, human errors, overloads and ageing due to the long trajectories they have. In this paper, the operation of the Distance Relay (21-ANSI/IEEE Standard Device Number) as primary or main protection as well as backup protection for overhead transmission lines is analyzed. The relay was modeled by using the ATP/EMTP program in order to visualize its response to different fault conditions and apparent impedance trajectories in the R-X complex diagram. MODELS programming language is used, which allows to implement algorithms that are used for structuring the functions and the operation logics of the relay. The relay behaviour under fault conditions at different locations along the line is validated by comparing it with the fault records from a real event in the electric power system of mexican utility.
ATP/EMTP中Mho继电器可视化的复R-X图
架空输电线路可能是最容易受到雷击、短路、人为错误、过载和老化影响的电气部件,因为它们的轨迹很长。本文分析了距离继电器(21-ANSI/IEEE标准设备号)作为架空输电线路主保护和后备保护的作用。利用ATP/EMTP程序对继电器进行建模,以便在R-X复图中可视化其对不同故障条件的响应和视阻抗轨迹。使用模型编程语言,它允许实现用于构建继电器的功能和操作逻辑的算法。通过与墨西哥电力系统实际故障记录的对比,验证了线路中不同位置的继电器在故障条件下的行为。
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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