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Modelling of high impedance faults in distribution systems and validation based on multiresolution techniques

机译:基于多分辨率技术的分配系统高阻抗断层的建模与验证

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摘要

The electric arc phenomenon associated with high impedance faults (HIFs) in distribution systems is an exciting subject that directly impacts over the reliability of electrical utilities, because fault currents are very small and present non-linearity and asymmetrical waveforms. Therefore, HIFs may be an undetectable phenomenon by overcurrent protections like fuses, re-closers, and relays. A HIF entails a challenge for its detection and location. In this sense, more realistic high impedance models, as well as reliable signal processing techniques, are needed to extract all transient characteristics aiming to detect HIFs in distribution networks. In this work, an efficient Resistive-HIF model is proposed and implemented into the Alternative Transients Program of the Electromagnetic Transients Program (ATP/EMTP) software to represent the main characteristics of HIFs. The model is compared against well-prove models by using two multiresolution approaches based on the Hermite transform and the Wavelet transform considering different frequency bands. (C) 2020 Elsevier Ltd. All rights reserved.
机译:与高阻抗故障(HIF)相关的电弧现象(HIF)是一种令人兴奋的主题,直接影响电力公用事业的可靠性,因为故障电流非常小,并且存在非线性和不对称波形。因此,HIF可以是通过过电流,重新闭合和继电器的过电流保护的无法检测到的现象。 HIF为其检测和位置而导致挑战。从这个意义上讲,需要更现实的高阻抗模型以及可靠的信号处理技术来提取旨在检测分发网络中HIF的所有瞬态特征。在这项工作中,提出了一种有效的电阻-HIF模型,并实现了电磁瞬变程序(ATP / EMTP)软件的替代瞬态程序,以表示HIF的主要特征。通过使用基于Hermite变换和考虑不同频带的小波变换,将该模型与良好的证明模型进行比较。 (c)2020 elestvier有限公司保留所有权利。

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