...
首页> 外文期刊>Electric power systems research >Grounding systems under lightning surges with soil ionization for high voltage substations by using two layer capacitors (TLC) model
【24h】

Grounding systems under lightning surges with soil ionization for high voltage substations by using two layer capacitors (TLC) model

机译:采用两层电容器(TLC)模型,采用土壤电离的雷电浪涌的接地系统

获取原文
获取原文并翻译 | 示例

摘要

The grounding system behavior in the time domain for the high voltage substations is the key-parameter to ensure the system reliability during transient conditions. Many approaches are used to investigate the behavior of the grounding systems subjected to the lightning surges. These approaches aim to simplify the grounding systems by equivalent lumped circuit-parameters (RLC) or by using the electromagnetic field theory. The soil ionization phenomenon can effectively reduce the grounding electrode resistance because of changing the electrode equivalent radius located in the soils. Yet, most of these approaches have their relative assumptions with merits and demerits. The current work introduces a proposed model based on a developed grounding unit cell using the Two Layer Capacitors (TLC). The proposed cell is implemented as a unit cell to simulate the performance of the grounding system under lightning strikes with considering the soil ionization effects. Different developed models of the grounding-cells are used to simulate the behavior of the grounding system including the soil ionization process. Finite Difference Time Domain FDTD scheme is used to calculate the electromagnetic fields inside the different proposed unit cells during lightning surges. The application of the grounding unit cell is extended to be implemented for a typical high voltage substation of 500/220 kV. The grounding unit cells are presented as T neighboring sections to evaluate the overlapping between the different elementary electrodes and conductors of the complex grounding systems over the whole area of the substation. The circuit-model of the grounding unit cell is developed using EMTP-RV/MATLAB. Finally, the obtained results are compared with the similar results found in the literature with good consistency.
机译:高压变电站时域的接地系统行为是键参数,以确保在瞬态条件下的系统可靠性。许多方法用于研究受避雷浪涌的接地系统的行为。这些方法旨在通过等效的集总电路参数(RLC)来简化接地系统,或者通过使用电磁场理论来简化接地系统。由于改变位于土壤中的电极等效半径,土壤电离现象可以有效地降低接地电极电阻。然而,这些方法中的大多数都具有优点和缺点的相对假设。当前工作通过两个层电容器(TLC)基于开发的接地单元电池引入了一个提出的模型。所提出的电池被实施为单位电池,以模拟雷击下的接地系统的性能,考虑到土壤电离效应。不同开发的接地电池模型用于模拟包括土壤电离过程的接地系统的行为。有限差分时域FDTD方案用于在避雷浪涌期间计算不同提出的单元电池内的电磁场。接地单元电池的应用延伸以实现500/220 kV的典型高压变电站。接地单元电池作为T相邻部分呈现,以评估在变电站的整个区域上的复合接地系统的不同基本电极和导体之间的重叠。接地单元电池的电路模型是使用EMTP-RV / MATLAB开发的。最后,将获得的结果与文献中发现的类似结果进行比较,其稠度良好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号