首页> 外文会议>International Applied Computational Electromagnetics Society Symposium in Denver >Analytical Evaluation of Matrix Elements of Electromagnetic Integral Equations with RWG basis Functions for Arbitrarily Oriented Pairs of Triangular Surface Elements
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Analytical Evaluation of Matrix Elements of Electromagnetic Integral Equations with RWG basis Functions for Arbitrarily Oriented Pairs of Triangular Surface Elements

机译:具有RWG基函数的电磁整体方程矩阵元件的分析评估,用于任意取向三角形元素对

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We present an approach to calculation of matrix elements for arbitrarily oriented planar surface elements, based on reduction of the surface integrals to line integrals over perimeters of the elements. The described method is a generalization of our previous developments applicable to parallel geometry elements; it utilizes a representation of the Helmholtz-equation Green function in terms of an auxiliary function acted upon by a differential operator involving tangential gradients in two different planes. Integration by parts allows then reduction of surface- to line integrals with nonsingular integrands. The latter integrals can be either evaluated as standard quadratures or expressed analytically, in every order of expansion in the wave number k, in closed form. The method can be applied to all operators arising in Maxwell equations and in similar problems in acoustics and elastodynamics, offering significant advantages in accuracy and the computational cost.
机译:我们提出了一种方法来计算用于任意取向的平面表面元件的矩阵元件,基于表面积分的减小到线路整体在元件的周长上。所描述的方法是我们以前的开发的概括,适用于平行几何元素;它利用亥姆霍兹方程绿色函数的表示在由涉及两个不同平面中的切向梯度的差分操作员作用的辅助功能。通过零件的集成允许减少表面到线积分与非奇异积分。后一种积分可以被评估为标准正态或分析地表达,以封闭形式的波数K中的膨胀顺序。该方法可以应用于Maxwell方程中产生的所有运算符,以及声学和弹性动力学中的类似问题,以准确性和计算成本提供了显着的优势。

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