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Characterization of voltage sag based on Point-on-Wave

机译:基于波点的电压暂降特性

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Point-on-Wave (POW) is a new characteristic of voltage sag which has a significant influence on the sensitivity of some equipment. This paper investigates the Point of Inception (POI) and the Point of Recovery (POR) of the voltage sag signal due to symmetrical and unsymmetrical faults in power systems. The POI of voltage sag could be any point on the wave where the voltage sag starts. On the other hand, the POR depends on the circuit breaker fault clearing practice. Based on the actual fault clearing angles, three groups of voltage sag signals separated by 180o are identified and characterized. For single-phase faults there are three possible recovery points on the voltage wave. For double phase faults, six PORs are found at three instants of time. Nine possible PORs for three phase faults are obtained at nine different instants in time. This paper demonstrates that depending on the circuit breaker fault clearing time, the voltage sag duration increases significantly, and this can be harmful to some sensitive equipment. This paper also analyzes the current signals at different POI of corresponding voltage sag signals and detects some critical POI of voltage sags for which the highest transients in current signals occur. The analysis has been carried out on two different radial distribution systems for 25 voltage sag signals over a cycle with 150 intervals, for which simulation results are reported.
机译:波形点(POW)是电压骤降的新特征,对某些设备的灵敏度有重要影响。本文研究了由于电力系统中的对称故障和非对称故障而导致的电压骤降信号的起始点(POI)和恢复点(POR)。电压骤降​​的POI可以是波浪上电压骤降开始的任何点。另一方面,POR取决于断路器故障清除实践。根据实际的故障清除角度,可以识别和表征由180o分隔的三组电压骤降信号。对于单相故障,电压波上有三个可能的恢复点。对于双相故障,在三个时间点发现六个POR。在九个不同的时间点获得了九个针对三相故障的可能的POR。本文表明,根据断路器故障清除时间的不同,电压骤降的持续时间会显着增加,这可能会对某些敏感设备造成危害。本文还分析了相应电压骤降信号的不同POI处的电流信号,并检测了一些电压骤降的临界POI,在这些临界POI中电流信号出现了最高的瞬变。在两个不同的径向分布系统上以150个间隔对一个周期内的25个电压骤降信号进行了分析,并报告了仿真结果。

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