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Comparison between 'cut and try' approach and automated optimization procedure when modelling the medium-voltage insulator

机译:中压绝缘子造型时“切割和尝试”方法与自动优化过程的比较

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In this article the comparison between 'cut and try' approach and automated optimization procedure is presented in the example of the medium-voltage insulator modelling. The goal of the research was to define the shape of the insulator, the shape of the capacitive dividers electrodes and the distances between the insulators. Both approaches were based on the numerical analysis performed with the EleFAnT (Electromagnetic Field Analysis Tools) programme tool. Firstly a series of FE analyses were performed when every improvement of the FE model was achieved with traditional 'cut and try' approach. In this procedure the model's modifications were determined by technical directives and our experiences in the field of modelling of similar devices. Secondly the same modelling procedure was carried out using optimization algorithm combined with FEM analysis. A newly developed pre-processor for automatic generation of finite elements' mesh, and genetic optimization algorithm of differential evolution were used together with the existent EleFAnT solver. The results of numerical analyses were confirmed by practical tests on a prototype of the insulator with capacitive divider.
机译:在本文中,“切割和尝试”方法和自动化优化过程之间的比较在中压绝缘体建模的示例中提出。该研究的目的是定义绝缘体的形状,电容分流器电极的形状和绝缘体之间的距离。两种方法都基于用elefant(电磁场分析工具)程序工具进行的数值分析。首先,当通过传统的“切割和尝试”方法实现FE模型的每次改进时,进行一系列FE分析。在此过程中,模型的修改是通过技术指令和我们在类似设备建模领域的经验确定的。其次,使用优化算法结合有限元分析进行相同的建模程序。用于自动生成有限元的网格的新开发的预处理器,以及存在的Elefant求解器一起使用差分演化的遗传优化算法。通过用电容分频器的绝缘体原型的实际测试确认了数值分析结果。

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