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Resistance to Earth of Grounding Grids in Tow-layer Soil Structure Using FEM and GA

机译:使用FEM和GA的牵引层土结构对接地网格的抵抗力

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Numerical methods such as finite element method (FEM) are the most accurate methods for computing of grounding grid resistance. Generally, these methods are complicate and time consuming for designing a grounding system, therefore, in many cases empirical relations are employed. In this paper, many grounding grids in two-layer soil with different dimensions and soil parameters are simulated using FEM. The FEM results are used to optimize the expressions for estimating the grounding resistance. The expressions are optimized by introducing an objective function and using genetic algorithm (GA). Simulations show that the proposed expressions give accurate results that match well with those obtained by complete FEM modeling of the grounding grids.
机译:有限元方法(FEM)的数值方法是用于计算接地网格电阻的最准确的方法。通常,这些方法是对设计接地系统的复杂化和耗时,因此,在许多情况下采用了实证关系。在本文中,使用FEM模拟具有不同尺寸和土壤参数的两层土壤中的许多接地网格。 FEM结果用于优化用于估计接地电阻的表达式。通过引入目标函数和使用遗传算法(GA)来优化表达式。仿真表明,该提出的表达式提供了准确的结果,该结果与通过完整的FEM模型获得的接地网格获得的结果相匹配。

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