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Differential voltage-based fault detection during power swing

机译:功率摆幅期间基于差分电压的故障检测

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摘要

Any incorrect action by the distance relay is harmful to the stability of power system at a power swing condition. In this respect, discrimination of faults from power swing should be fast and accurate. This paper introduces a new fault detection method using time derivative of voltage signals at swing condition. The sample interval between two successive peaks of the derivative of a voltage signal always remains above a minimum value during power swing, while its value decreases by a significant margin after the occurrence of a fault. This discriminating feature of the differential voltage is mathematically developed and applied to detect faults under swing conditions. A 9-bus-modified WSCC system is considered for validating the method, and the simulation is carried out in an electromagnetic transient programme. The method detects both symmetrical and unsymmetrical faults accurately and quickly at power swing condition for various fault locations, power angles, fault inception times, fault resistances and swing frequencies. Its performance is satisfactory for series compensated lines and under noisy condition. The fault detection results and the comparative study with two available methods justify its potential.
机译:距离继电器的任何不正确动作都会在电源摆幅条件下损害电源系统的稳定性。在这方面,从功率摆动中识别故障应该是快速而准确的。本文介绍了一种新的故障检测方法,该方法利用电压信号在摆动条件下的时间导数。电压信号导数的两个连续峰值之间的采样间隔在功率摆幅期间始终保持在最小值之上,而在发生故障后,其值会显着减小。数学上开发了差分电压的这种区别性特征,并将其用于检测摆动条件下的故障。考虑使用9总线修改的WSCC系统来验证该方法,并在电磁瞬态程序中进行仿真。该方法可在功率摆幅条件下针对各种故障位置,功率角,故障发生时间,故障电阻和摆幅频率准确,快速地检测对称和非对称故障。其性能对于串联补偿线路和在噪声条件下均​​令人满意。故障检测结果和两种可用方法的比较研究证明了其潜力。

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