基于起始点和恢复点的瞬时电压跌落点波检测与表征

Sumaiya Hasan, K. Muttaqi, D. Sutanto, A. Bouzerdoum
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引用次数: 3

摘要

本文提出了一种基于电压骤降起始角和恢复角的分析算法来检测和表征电压骤降。一项初步研究已经确定,对于所有可能的电压凹陷起始角,每个阶段只能产生三个可能的恢复角。基于这三个电压凹陷恢复点,可以将电压凹陷信号聚类成三组,每组间隔180度。分析表明,对于故障引起的电压骤降,实际的起始点POI和恢复点POR取决于PAJ(相角跳变)、变压器与负载的Y/Δ连接以及保护装置的故障清除时间等几个参数。通过对两种不同径向配电网中不同类型对称和不对称故障的电压跌落波形进行验证。从仿真结果可以看出,在某些特定的起始角下,实际电压暂降持续时间可能会显著增加,即使电压暂降幅度较浅,也可能对某些敏感设备造成危害。分析还表明,暂态电流的大小还与电压暂降起始角有关。大电流瞬态可能导致某些敏感设备的中断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection and Characterization of the Instantaneous Point-on-wave of Voltage Sags in terms of Point of Inception and Point of Recovery
This paper proposes an analytical algorithm to detect and characterize voltage sags in terms of voltage sag inception and recovery angles which are commonly known as point-on-wave (POW). A preliminary study has identified that only three possible recovery angles can take place in each phase for all possible voltage sag inception angles. Based on these three voltage sag recovery points, voltage sag signals can be clustered into three groups each separated by 180 degree. This analysis shows that for a fault induced voltage sag the actual points of inception POI) and points of recovery (POR) depend on a few parameters such as PAJ (Phase Angle Jump), Y/Δ connection of transformer and load, and fault clearing time of protective devices. The proposed method is validated using voltage sag waveforms of different types of symmetrical and asymmetrical faults obtained from two different radial distribution networks. From the simulation results it is observed that for some particular starting angles the actual voltage sag duration may increase significantly which can be harmful for some sensitive equipment even if the sag is shallow in magnitude. This analysis also shows that the magnitude of the current transient also depends on voltage sag starting angle. A large current transient can cause disruption of some sensitive equipment.
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