A multi‐variables loss of excitation protection scheme to improve the factors of accuracy and speed of detection than the conventional impedance relay

Mohammad Sajad Fatolahi, Saman Hosseini-Hemati, A. Rastgou, Saeed Kharrati
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Abstract

The most common disadvantages of loss of excitation (LOE) impedance relay are its improper operation in the conditions of power system disturbances (PSD) and its long operation time. In this regard, to solve the mentioned problems and as a result improve the accuracy and speed of detecting the LOE events, four key variables including active power (Psg), reactive power (Qsg), load angle (δsg), and terminal voltage (Vsg) are selected, on the basis of an in‐depth theoretical‐ and simulation studies. These variables have been implemented in a precise combinational logic. In the developed LOE detection logic of this paper, the dependent parameters of Vsg and Qsg as well as Psg and δsg parameters are examined simultaneously in an AND logic cluster. If both the defined combinations detect the occurrence of LOE, the generator trip command is issued. Otherwise, the normal operation of the under‐study machine will continue. The results of the performed simulations in MATLAB/Simulink environment (2017b) during the detailed scenarios of LOE and PSD events on the IEEE 39‐bus standard system confirm the efficiency of the outlined LOE protection model. Meanwhile, its superiority from the viewpoints of accuracy, swiftness, and simplicity and cost of implementation are comprehensively compared with the other schemes.
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与传统阻抗继电器相比,可提高检测精度和速度的多变量失励保护方案
励磁损耗(LOE)阻抗继电器最常见的缺点是在电力系统干扰(PSD)条件下无法正常运行,且运行时间较长。为此,为了解决上述问题,提高检测 LOE 事件的准确性和速度,在深入的理论和仿真研究基础上,选择了四个关键变量,包括有功功率 (Psg)、无功功率 (Qsg)、负载角 (δsg) 和端电压 (Vsg)。这些变量已在精确的组合逻辑中实现。在本文开发的 LOE 检测逻辑中,Vsg 和 Qsg 以及 Psg 和 δsg 参数的相关参数在 AND 逻辑群中同时进行检测。如果两个定义的组合都检测到发生了 LOE,则发出发电机跳闸指令。否则,被研究机器将继续正常运行。在 MATLAB/Simulink 环境(2017b)中对 IEEE 39 总线标准系统中 LOE 和 PSD 事件的详细场景进行的仿真结果证实了所概述的 LOE 保护模型的效率。同时,从准确性、快速性、实施的简单性和成本等角度综合比较了其与其他方案的优越性。
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