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New method for calculation of the harmonics in the residual earth fault current in isolated and compensated networks

机译:孤立和补偿网络中剩余地球故障电流谐波的新方法

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In European distribution networks the resonant-ground system dominates. The advantages of the resonance neutral earthing are based mainly on the very low single-pole fault current, the residual earth fault current IRES. The growing use of both, cables and power electronics, increases the residual earth fault current IRES. In the case of a single-pole earth fault, harmonic components in residual earth fault current IRES can reach values, which can violate the limits defined by standards. Up to now, the estimation of the residual earth fault current IRES is usually done with measurements in the field by solid grounding of one phase at the bus bar in the substation. However, these measurements do not correspond to the real fault conditions. Ground faults occur anywhere in the network with relatively high fault resistances. In this paper a new method is presented to enable an accurate estimation of the residual earth fault current IRES during the earth fault by using the harmonics measurement of the voltages during the healthy state of the network, the network configuration and the expected impedance at the fault location. The results of the new method were verified in real field tests and will be also presented in this paper.
机译:在欧洲分销网络中,共振地系统主导。共振中性接地的优点主要基于非常低的单极故障电流,残留的接地故障电流。越来越多地使用两种电缆和电力电子器件,增加了残留的接地故障电流IRE。在单极接地故障的情况下,残留地球故障电流IRE中的谐波分量可以达到值,这可以抵消标准定义的限制。到目前为止,估计残余接地故障电流IRES通常通过在变电站中的汇流条上的一个相的固体接地进行场的测量。然而,这些测量不对应于实际故障条件。接地故障发生在网络中的任何位置,具有相对较高的故障电阻。在本文中,提出了一种新方法,以便在接地故障期间通过使用网络的健康状态的谐波测量,网络配置和故障预期阻抗的谐波测量来精确估计地面故障期间的剩余接地故障电流IRE。地点。新方法的结果在实地测试中验证,并将在本文中介绍。

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