Realistic testing of power swing blocking and out-of-step tripping functions

Quintin Verzosa
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引用次数: 28

Abstract

Sudden changes in the power system, such as faults, network changes due to line trip outs, and disconnection of large loads or a generating plant, causing oscillations until remaining generators adjust and settle to new stable conditions. In some cases these power oscillations or swings are so large that some generators run out of step and lose synchronism. With generators having different frequencies these power swings result in voltages and currents in different parts of the networks to swing in amplitude and phase angle. The impedance measurements based on these varying voltages and currents will also oscillate. If the measured impedance becomes very small and enters the distance relay zones it can lead to an undesired trip of the distance relay. Distance relays have power swing blocking features to detect these conditions and prevent a misoperation for stable power swings. However, during the blocking period a fault can occur on the line and the distance relay must detect this condition and unblock the distance zones.
功率摆挡和失步脱扣功能的实际测试
电力系统的突然变化,如故障、线路跳闸引起的网络变化、大负荷或发电厂的断开,引起振荡,直到剩余的发电机调整并稳定到新的稳定状态。在某些情况下,这些功率振荡或摆动如此之大,以至于一些发电机失步而失去同步。由于发电机的频率不同,这些功率波动会导致电网不同部分的电压和电流的幅值和相角波动。基于这些变化的电压和电流的阻抗测量也会振荡。如果测量阻抗变得非常小并进入距离继电器区域,则可能导致距离继电器不希望的跳闸。距离继电器具有功率摆动阻止功能,可以检测这些情况,并防止因稳定的功率摆动而误操作。然而,在阻塞期间,线路上可能发生故障,距离继电器必须检测到这种情况并解除对距离区域的阻塞。
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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