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Characteristics of Earth Electrodes Under High Frequency Conditions: Numerical Modelling

机译:高频条件下接地电极的特性:数值模拟

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The earthing segments of electrical power systems play an important role in ensuring human safety. A core function of these earthing systems is to maintain reliable operation and ensure safety for personnel and apparatus during fault conditions. Earthing electrodes can be buried in the soil to dissipate lightning and fault currents into the earth and limit the effect of any magnitude of voltage and current generated between different contact points to earth structures that may be occupied by people or sensitive electrical equipment. In order to obtain the best design of an electrical system to protect power system installations and ensure human safety against abnormal conditions, it is useful to clarify the behaviour of earthing systems subjected to variable frequency currents. In this paper, a numerical study is thus implemented to investigate the behaviour of earthing electrodes subjected to variable frequency current using the computational software program HIFREQ/FFTSESCDEGS with a uniform equivalent soil model. The effect of soil resistivity and permittivity on the behaviour of earthing electrodes is thus obtained, and the relationship between the length of earthing electrodes and their earthing responses over a wide range of frequencies from DC up to 1MHz is identified.
机译:电力系统的接地部分在确保人身安全方面起着重要作用。这些接地系统的核心功能是维持可靠运行,并确保故障条件下人员和设备的安全。接地电极可以埋在土壤中,以将雷电和故障电流消散到土壤中,并限制不同接触点之间产生的任何大小的电压和电流对可能被人或敏感电气设备占用的接地结构的影响。为了获得电气系统的最佳设计,以保护电力系统装置,并确保在异常条件下的人身安全,有必要澄清接地系统在变频电流下的行为。本文利用计算软件HIFREQ/FFTSESCDEGS和统一等效土壤模型对接地电极在变频电流作用下的行为进行了数值研究。由此获得了土壤电阻率和介电常数对接地电极行为的影响,并确定了接地电极长度及其在从直流到1MHz的宽频率范围内的接地响应之间的关系。

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