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Substation grounding system optimization with utilizing a novel MATLAB application

机译:利用新型MATLAB应用程序优化变电站接地系统

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the aim of this work is to develop an application which has the capability of modeling and optimizing regular shape (rectangular, square or L shape) ground grids under a two-layer soil model. The ground grid optimal design is the focus of this paper by using a 3-step optimization method: 1) using IEEE-80 equations to calculate touch and step potentials, which makes constraints continuous and differentiable for gradient descent methods; 2) using the optimal solutions from step 1 as the initial input into a pattern search algorithm by applying a more accurate but non-differentiable touch and step potential calculation method; 3) performing a perturbation test to determine whether the results from step 2 are globally optimal, otherwise using a genetic algorithm to re-optimize the solution from step 2 until it passes the perturbation test.
机译:这项工作的目的是开发一种能够在两层土壤模型下建模和优化规则形状(矩形,正方形或L形)地面网格的应用程序。接地网格的优化设计是本文采用的三步优化方法的重点:1)使用IEEE-80方程计算接触和阶跃电位,这使得约束对于梯度下降方法是连续且可微的。 2)通过应用更精确但不可微的触摸和步电位计算方法,将步骤1的最优解作为模式搜索算法的初始输入; 3)执行扰动测试以确定步骤2的结果是否是全局最优的,否则使用遗传算法对步骤2的解决方案进行重新优化,直到其通过扰动测试为止。

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