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A New Transient Current Based Centralized Selectivity Algorithm for Earth Faults in Isolated and Compensated Neutral MV Networks

机译:隔离和补偿中性MV网络接地故障的新瞬态电流集中选择性算法

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This paper presents a new centralized selectivity algorithm for earth-faults in isolated and compensated neutral medium voltage (MV) networks. The algorithm proposes to investigate and utilize the relation between the transient phase current changes in the substation transformer and the transient residual currents for each feeder and section of the network. The transient RMS values of the residual currents for each feeder and section and the transformer phase current changes are calculated, in a constant sliding window of 2.5 ms, using a sampling frequency of 25 kHz. The proposed fault indication levels for each feeder and section will be calculated. The faulted feeder and section can be selected precisely from the higher fault indication levels, without any voltage measurements. The proposed algorithm is valid for isolated and compensated neutral networks. A 20 kV, 251 km medium voltage distribution network is simulated by ATP/EMTP program. Extensive simulations are performed to validate the proposed algorithm.
机译:本文提出了一种用于隔离和补偿中性中性介质电压(MV)网络的接地故障的新集中选择性算法。该算法建议研究变电站变换器中的瞬态电流变化与网络的每个馈线和部分的瞬态剩余电流之间的关系。使用25kHz的采样频率,计算每个进纸器和截面和截面的残差电流的瞬态RM值和变压器相电流变化,并使用25kHz的采样频率计算。将计算每个馈线和部分的所提出的故障指示级别。可以精确地从更高的故障指示水平精确选择故障馈线和部分,而无需任何电压测量。该算法对于隔离和补偿中性网络有效。通过ATP / EMTP程序模拟了20 kV,251km中等电压分布网络。进行广泛的模拟以验证所提出的算法。

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