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Modeling of high impedance faults in electric distribution systems

机译:配电系统中高阻抗故障的建模

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A high impedance fault (HIF) is generated when an energized conductor (of a primary feeder) makes contact with the ground or with neighboring objects such as branch trees, overgrown vegetation, building walls, asphalt, any object to ground. Such faults are undetectable by conventional overcurrent devices such as overcurrent relays and fuses because their low current magnitude. Furthermore, arcing accompanies high impedance faults (HIFs) and represents a risk of security to people and damage to physical infrastructure. Thus, in order to obtain a trustworthy detection algorithm, it is necessary to have a reliable high impedance fault model. This paper presents an analysis of the HIF field test results and a methodology for modeling HIFs by considering a single nonlinear resistance to represent the fault. The methodology is implemented by using the MODELS section in ATP/EMTP.
机译:当(主馈线的)通电导体与地面或与邻近物体(例如,树枝树,杂草丛生的植物,建筑物墙壁,沥青,任何地面物体)接触时,会产生高阻抗故障(HIF)。此类故障无法通过常规的过电流设备(例如,过电流继电器和保险丝)检测到,因为它们的电流幅度较小。此外,电弧伴有高阻抗故障(HIF),并存在着对人身安全和物理基础设施造成损害的风险。因此,为了获得可信赖的检测算法,必须具有可靠的高阻抗故障模型。本文介绍了对HIF现场测试结果的分析,以及通过考虑单个非线性电阻来表示故障的HIF建模方法。该方法是通过使用ATP / EMTP中的“模型”部分实现的。

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