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Detection method for single-pole-grounded faulty feeder based on parameter identification in MVDC distribution grids

机译:基于参数识别的MVDC配电网单极接地故障馈线检测方法

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Detection of the single-pole-grounded faulty feeder in ungrounded or high-impedance grounded MVDC distribution systems is a challenging task, because such fault cannot provide persistent and considerable fault current. To solve this problem, zero-mode fault network of radial MVDC system is analyzed and an algorithm based on identification capacitance to ground of the feeder's zero-mode fault network is proposed. Then on the premise of external fault, the mathematical model of zero-mode network is built for each feeder. The transient zero-mode voltages and currents of each feeder are utilized to calculate the capacitance to ground of zero-mode fault network. For the healthy feeder, the zero-mode fault network is its own zero-mode network and the calculated capacitance to ground is positive. But zero-mode fault network of faulty feeder is an equivalent zero mode network of its background healthy system and its calculated capacitance to ground is negative. This characteristic is the basic theory of the proposed algorithm. Considering the calculation error, the polarity of the average value and deviation of calculated capacitances and the number of positive calculated capacitances are used to detect the faulty feeder. The simulation results have shown that the proposed algorithm is accurate, reliable and more sensitive to detect high impedance ground faults.
机译:在不接地或高阻抗接地的MVDC配电系统中检测单极接地的故障馈线是一项艰巨的任务,因为此类故障无法提供持续且相当大的故障电流。针对这一问题,分析了径向MVDC系统的零模式故障网络,提出了一种基于馈线零模式故障网络接地识别电容的算法。然后在外部故障的前提下,为每个馈线建立了零模式网络的数学模型。每个馈线的瞬时零模式电压和电流用于计算零模式故障网络的接地电容。对于健康的馈线,零模式故障网络是其自己的零模式网络,并且对地的计算电容为正。但是故障馈线的零模式故障网络是其背景健康系统的等效零模式网络,其对地电容的计算值为负。该特征是所提出算法的基本理论。考虑到计算误差,可以使用平均值的极性和计算电容的偏差以及计算电容的正数来检测故障的馈线。仿真结果表明,该算法准确,可靠,对高阻抗接地故障的检测更加敏感。

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