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Detection of faulted phase type in distribution systems based on one end voltage measurement

机译:基于一端电压测量的配电系统故障相类型检测

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摘要

Distribution power systems exposed to various unexpected failures due to many random causes. These failures are mostly happened as a result of phase faults in power system and will affect negatively the availability and reliability of the power system. Accurate detection of these faults will help in restoration of power in a timely manner and not to cause any severe damage to the power system equipment. This paper investigates the problem of accurate detection of faulted phase types occurred in the distribution system. The features of the voltage waveforms recorded from one end measurement of the distribution system during the fault occurrence are used in the proposed technique. Clarke's transformation criterion used to identify if the fault is line-to-ground (grounded fault) or phase-to-phase (ungrounded fault). Then the fault types are classified by the high performance comparison method of the voltage signals using phase angle shift prior and during the fault occurrence. Different types of faults namely, single-phase to ground, double-phase to ground, phase-phase and balanced three-phase faults that are occurred at different locations with different fault resistances and inception angles are tested and analyzed. Results from simulation of faults on a model of 33 kV distribution system typical networks presented.
机译:配电系统由于许多随机原因而遭受各种意外故障。这些故障大多数是由于电力系统的相故障而发生的,并且将对电力系统的可用性和可靠性产生负面影响。准确检测这些故障将有助于及时恢复电源,并且不会对电源系统设备造成任何严重损害。本文研究了配电系统中发生的故障相类型的准确检测问题。所提出的技术使用在故障发生期间从配电系统的一端测量记录的电压波形的特征。 Clarke的转换标准用于识别故障是线对地(接地故障)还是相间(不接地故障)。然后,通过故障发生之前和发生期间的相角偏移,通过电压信号的高性能比较方法对故障类型进行分类。测试和分析了在不同位置发生的具有不同故障电阻和起始角度的不同类型的故障,即单相接地,双相接地,相相和平衡三相故障。给出了基于33 kV配电系统典型网络模型的故障仿真结果。

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