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Computational cost estimations and comparisons for three methods of applied electromagnetics (MoM, MAS, MMAS)

机译:三种电磁学方法(MoM,MAS,MMAS)的计算成本估算和比较

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The computational costs of three numerical techniques used in electromagnetics, namely the moment method (MoM), the method of auxiliary sources (MAS), and its modified version (MMAS), are estimated for various calculation schemes and configurations. Both surface and volumetric problems are considered. The number of multiplications required for the system-matrix fill is calculated and added to the algorithmic cost of the matrix inversion. The Green's function singularity extraction is also taken into account, particularly for the MoM. The original integrals are transformed into the local (area or volume) coordinate systems, and are subsequently evaluated on the basis of standard numerical quadrature schemes. For the surface integral equation (SIE), some calculations using either the well-known Duffy transformations or some analytical-numerical integration schemes are also presented (expressions are available only for the scalar potential integral case). For the MAS and MMAS, the matrix fill is shown to be much faster, since no time-consuming integrations are involved. The analysis is applied to various objects, such as a perfectly conducting (PEC) parallelpiped, a PEC sphere, and a microstrip patch antenna, and useful conclusions are drawn on the relative efficiency of the three methods.
机译:对于各种计算方案和配置,估计了电磁学中使用的三种数值技术的计算成本,即矩量法(MoM),辅助源法(MAS)及其修改版(MMAS)。既考虑表面问题又考虑体积问题。计算系统矩阵填充所需的乘法数,并将其添加到矩阵求逆的算法成本中。还考虑了格林函数的奇异性提取,特别是对于MoM。原始积分被转换为局部(区域或体积)坐标系,然后在标准数值正交方案的基础上进行评估。对于表面积分方程(SIE),还提出了一些使用众所周知的Duffy变换或某些解析数字积分方案的计算(表达式仅适用于标量势积分情况)。对于MAS和MMAS,由于不涉及耗时的集成,因此矩阵填充显示得更快。该分析适用于各种对象,例如完全导电(PEC)的平行管,PEC球体和微带贴片天线,并且得出了关于这三种方法的相对效率的有用结论。

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