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Application of adaptive basis functions for a diagonal moment matrix solution of arbitrarily shaped three-dimensional conducting body problems

机译:自适应基函数在任意形状三维导体问题对角矩矩阵解中的应用

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We present the application of specially constructed adaptive basis functions that generate a diagonal matrix in the method of moments solution procedure for the calculation of scattered electromagnetic fields from arbitrarily shaped conducting bodies excited by a plane electromagnetic wave. The arbitrary body is modeled using planar triangular patches. The crucial step in the solution procedure is the construction of the adaptive basis functions to generate the diagonal matrix. This task is accomplished with the help of well-known RWG basis functions. The solution thus obtained is very efficient, accurate, and applicable to truly arbitrary bodies. Several numerical examples are presented to validate the new method.
机译:我们介绍了特殊构造的自适应基函数的应用,这些函数在矩解过程的方法中生成对角矩阵,用于计算由平面电磁波激发的任意形状的导体产生的散射电磁场。使用平面三角形补丁对任意物体进行建模。求解过程中的关键步骤是构造自适应基函数以生成对角矩阵。借助众所周知的RWG基本功能可以完成此任务。这样获得的解决方案非常有效,准确,并且适​​用于真正任意的物体。给出了几个数值例子来验证新方法。

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