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Back Up Protection Scheme for High Impedance Faults Detection in Transmission Systems Based on Synchrophasor Measurements

机译:基于同步酚测量的传输系统中高阻抗故障检测的备份保护方案

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摘要

High impedance faults are rather difficult to detect, due to their inherent characteristics. However, in most cases high-impedance low-current faults evolve to low-impedance high-current faults, thus giving rise to life hazard situations and equipment damage. In this article, a novel back up protection scheme for high impedance fault detection, based on synchrophasor measurement technology, is proposed. In fact, the presented detection method can be thought as the combination of a classic differential and a classic admittance relay. The protection device designated for high impedance fault detection, incorporating the proposed novel protection algorithm, permanently monitors transmission line's shunt admittance thus being able to detect changes-increase in the resistive part of shunt admittance, namely the shunt conductance. Actually, a sudden rise of transmission line's shunt conductance is a strong indicator of high impedance fault inception. Conducted computer simulations confirmed a high degree of selectivity and sensitivity of the proposed method. Moreover, the technical feasibility of the approach was tested considering real-world measurement data obtained for two 220 kV transmission lines. From the acquired data, measurement uncertainties of the monitored parameters in normal operating conditions, were calculated. The results demonstrate excellent sensitivity of the proposed method, even for the case of short transmission lines during low-loading conditions.
机译:由于其固有的特性,高阻抗断层难以检测。然而,在大多数情况下,高阻抗低电流故障发展到低阻抗的高电流故障,从而产生危及危险情况和设备损坏。在本文中,提出了一种基于同步酚测量技术的高阻抗故障检测的新型备份保护方案。实际上,所提出的检测方法可以被认为是经典差分和经典导纳继电器的组合。为高阻抗故障检测指定的保护装置,包括所提出的新型保护算法,永久监控传输线的分流入导率,从而能够检测分流终止的电阻部分的变化 - 增加。实际上,传输线路分流电导的突然上升是高阻抗故障初始的强大指标。进行的计算机模拟确认了所提出的方法的高度选择性和灵敏度。此外,考虑到为两个220 kV传输线获得的实际测量数据进行测试的技术可行性。从所获取的数据中,计算了正常操作条件下监测参数的测量不确定性。结果表明了所提出的方法的优异敏感性,即使对于低负载条件期间的传输线路的情况。

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