Application of Modal and Wavelet Transformation in Detection and Localization of High Impedance Faults

Šeila Gruhonjić Ferhatbegović, Z. Bajramovic
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Abstract

Abstract High-resistance fault occurs when the phase comes into contact with ground or grounded parts over objects or surfaces with high resistance values. This results in small values of currents and voltages that may be insufficient for adequate operation of existing protections. As a result, the malfunction continues and can cause electric shocks, further damage to the equipment, and can be a cause of fire. Various approaches to solving this problem can be found in the literature, such as, for example, monitoring the harmonic content of currents and voltages, the application of artificial intelligence and neural networks and the application of wavelet transformation. This paper presents the results of detection and localization of high impedance fault in the distribution 10 kV network based on the application of modal and wavelet transformation of currents at the beginning of the distribution feeder.
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模态与小波变换在高阻抗故障检测与定位中的应用
高阻故障是指在高电阻值的物体或表面上与接地或接地部件接触时发生的故障。这导致电流和电压值小,可能不足以充分运作现有的保护。因此,故障持续并可能导致触电,进一步损坏设备,并可能引起火灾。在文献中可以找到解决这一问题的各种方法,例如监测电流和电压的谐波含量,人工智能和神经网络的应用以及小波变换的应用。本文介绍了基于配电馈线起始电流模态和小波变换的10kv配网高阻抗故障检测与定位结果。
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