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Inclusion of Field-Solver-Based Tower Footing Grounding Models in Electromagnetic Transient Programs

机译:在电磁暂态程序中包含基于现场求解器的塔基接地模型

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This paper presents a new approach to wideband modeling of tower footing grounding impedances. Appropriate representation of transmission tower footing impedances is essential in electromagnetic (EM) transient simulations for proper evaluation of overvoltages and flashovers in the system during fast-front transient conditions such as lightning strikes. In this paper, a field solver is used to precisely model the most popular types of tower footing grounding systems, i.e., rods, counterpoises, and ring electrodes, for a variety of dimensions and soil parameters. Results are stored in a lookup table and used for generating frequency-dependent models that are exported to EM transient simulators. The table and model generation tool can be used by utility companies to model tower footings while taking into account local variations along the right-of-way, such as local variations in soil resistivity. The presented examples show close agreement of results of lightning studies using developed electrode models included in EM tools, e.g., PSCAD, EMTP-RV, and ATP-EMTP. A sensitivity study shows that the maximum voltage at the tower top during a direct lightning strike can be up to 19% higher when using the adopted modeling procedure, as compared to a standard approach of using a fixed resistor equal to the power frequency resistance.
机译:本文提出了一种新的塔脚接地阻抗宽带建模方法。在电磁(EM)瞬态仿真中,正确表示传输塔基础阻抗对于正确评估系统的过电压和闪络在快速前瞬态瞬态情况(如雷击)中至关重要。在本文中,现场求解器用于针对各种尺寸和土壤参数精确建模最流行的塔式基础接地系统类型,即杆,地网和环形电极。结果存储在查找表中,并用于生成与频率相关的模型,并将其导出到EM瞬态仿真器。公用事业公司可以使用表格和模型生成工具对塔基础建模,同时考虑沿路权的局部变化,例如土壤电阻率的局部变化。所提供的示例显示了使用包括在EM工具(例如PSCAD,EMTP-RV和ATP-EMTP)中的发达电极模型进行的雷电研究结果的一致。一项敏感性研究表明,与使用固定电阻等于工频电阻的标准方法相比,使用所采用的建模程序时,直接雷击时塔顶的最大电压可高出19%。

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