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The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics

机译:网络不对称性对使用高次谐波的接地故障保护的设置和灵敏度的影响

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Detection of high resistance earth faults in medium voltage networks is an important problem due to ineffectiveness of traditional earth fault protections. Such short circuits can be detected by the criterion of a reactive power of higher harmonics for zero sequence current and voltage. The main problem is determination of the power setting value in the protection, which depends on the asymmetry of phase-to-earth capacitances and higher harmonics in supply voltages, which are generated by non-linear loads. The intensive tests of the asymmetry of the zero sequence currents and voltages for harmonics and their reactive power have been carried out in 15 kV compensated network as a function of all relevant parameters, i.e.: maximum capacitance deviation of the network and protected line, percentage content of harmonics in supply voltages, capacitive current of the network and the line. It has been shown that third harmonics of the zero sequence voltage and current are the best suited for practical use, since the asymmetry reactive power of these components is the smallest among the considered harmonics and the protection sensitivity will be the highest.
机译:由于传统的接地故障保护功能无效,因此在中压网络中检测高阻接地故障是一个重要问题。可以通过零序电流和电压的高次谐波无功功率的标准来检测这种短路。主要问题是确定保护中的功率设定值,这取决于非线性负载产生的相地电容的不对称性和电源电压中的高次谐波。在所有相关参数的函数下,已在15 kV补偿网络中对零序电流和电压的谐波及其无功功率的不对称性进行了严格测试,即:网络和保护线路的最大电容偏差,百分比含量电源电压,网络和线路的电容性电流中的谐波。已经表明,零序电压和电流的三次谐波最适合实际使用,因为这些分量的不对称无功功率在所考虑的谐波中最小,并且保护灵敏度最高。

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