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A Meshless Method for Electromagnetic Field Computation Based on the Multiquadric Technique

机译:基于多二次技术的无网格电磁场计算方法

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摘要

A meshless method for electromagnetic field computation is developed based on the multiquadric interpolation technique. A global approximation to the solution is built based only on the discretization of the domain in nodes and the differential equations describing the problem in the domain and its boundary. An attractive characteristic of the multiquadric solution is that it is continuous and it has infinitely continuous derivatives. This is particularly important to obtain field quantities in electromagnetic analysis. The method is also capable of dealing with physical discontinuities present at the interface between different materials. The formulation is presented in the Cartesian and polar coordinates, which can be extended to other systems. We applied the formulation in the analysis of an electrostatic micromotor and a microstrip. The results demonstrate good agreement with other numerical technique, showing the adequacy of the proposed methodology for electromagnetic analysis.
机译:基于多二次插值技术开发了一种无网格的电磁场计算方法。仅基于节点中域的离散化和描述该域及其边界中问题的微分方程,才能建立该解决方案的全局近似。多二次解的一个吸引人的特征是它是连续的并且具有无限连续的导数。这对于获得电磁分析中的磁场量特别重要。该方法还能够处理在不同材料之间的界面处存在的物理不连续性。该公式以笛卡尔坐标和极坐标表示,可以扩展到其他系统。我们将该配方应用于静电微电机和微带分析中。结果表明与其他数值技术有很好的一致性,表明所提出的电磁分析方法是足够的。

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