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首页> 外文期刊>Power Delivery, IEEE Transactions on >An Improved Circuit-Based Model of a Grounding Electrode by Considering the Current Rate of Rise and Soil Ionization Factors
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An Improved Circuit-Based Model of a Grounding Electrode by Considering the Current Rate of Rise and Soil Ionization Factors

机译:考虑电流上升速率和土壤电离因子的改进的基于电路的接地电极模型

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摘要

The behavior of a grounding system can be predicted by using either the electrical equivalent circuit models or electromagnetic computation. Despite its advantages over the latter, the equivalent circuit model fails to accurately predict the behavior under transient conditions due to the absence of two key factors, namely: 1) the current rate-of-rise and 2) soil ionization. This paper proposes a method to enhance the performance of the equivalent circuit model by taking into consideration of both mentioned factors. It is discovered that by using the proposed method, the estimated values of and of the equivalent circuit model are improved. The computed inductance dynamically changes with the change in the lightning current parameters, thus improving its accuracy for all current rate-of-rise conditions. The soil ionization effect is implemented as recommended by CIGRE, and this further improves the accuracy of the model. As a result, the voltage response of the model becomes more accurate and comparable to the electromagnetic computation results. Another important feature of the proposed model is that it can be directly applied or connected to power system equipment. Thus, an accurate grounding system effect on the transient performance of key power equipment, such as surge arresters, can be obtained.
机译:可以通过使用等效电路模型或电磁计算来预测接地系统的行为。尽管它具有优于后者的优点,但由于缺少两个关键因素,等效电路模型无法准确预测瞬态条件下的行为:1)当前的上升速率和2)土壤电离。本文提出了一种通过考虑上述两个因素来提高等效电路模型性能的方法。发现通过使用所提出的方法,等效电路模型的和的估计值得到了改善。计算得出的电感随着雷电电流参数的变化而动态变化,从而提高了在所有电流上升率条件下的精度。土壤电离效应按照CIGRE的建议实施,这进一步提高了模型的准确性。结果,模型的电压响应变得更加准确,并且可以与电磁计算结果进行比较。该模型的另一个重要特征是它可以直接应用于或连接到电力系统设备。因此,可以获得准确的接地系统对关键电源设备(例如电涌放电器)的瞬态性能的影响。

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