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Evaluation of the Capacitance and Charge Distribution for Conducting Bodies by Circuit Modelling

机译:通过电路建模评估导体的电容和电荷分布

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This paper presents a numerical analysis for computation of free space capacitance of different arbitrarily shaped conducting bodies based on the finite element method with triangular subsection modeling. Evaluation of capacitance of different arbitrary shapes is important for the electrostatic analysis. Capacitance computation is an important step in the prediction of electrostatic discharge which causes electromagnetic interference. We specifically illustrated capacitance computation of electrostatic models like unit cube, rectangular plate, triangular plate, T-shaped plate, sphere and two touching spheres. Numerical data on the capacitance of conducting objects are presented. The results are compared with other available results in the literature. We used the COMSOL Multiphysics software for the simulation. The models are designed in three-dimensional form using electrostatic environment and can be applied to any spacecraft circuit modeling design. The findings of this study show that the finite element method is a more accurate method and can be applied to any circuit modeling design.
机译:本文基于三角形截面有限元方法,给出了计算任意形状导体的自由空间电容的数值分析方法。评估任意形状的电容对于静电分析很重要。电容计算是预测会引起电磁干扰的静电放电的重要步骤。我们具体说明了静电模型的电容计算,例如单位立方,矩形板,三角形板,T形板,球体和两个接触球体。给出了有关导电物体电容的数值数据。将结果与文献中其他可用结果进行比较。我们使用COMSOL Multiphysics软件进行仿真。这些模型使用静电环境以三维形式进行设计,并且可以应用于任何航天器电路建模设计。这项研究的结果表明,有限元方法是一种更准确的方法,可以应用于任何电路建模设计。

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