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The integral equation MEI (IE-MEI)

机译:the integral equation me i (IE-me i)

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The integral equation formulation of the Measured Equation of Invariance (IE-MEI) can be considered as a special case of combined field integral equation (CFIE) discretized by the method of moments (MoM), in which the choice of different testing functions for the electric and magnetic fields results in an approximately sparse linear system to solve for the induced current, where most of the matrix elements can be neglected. These new testing functions are numerically derived by a procedure borrowed from the Measured Equation of Invariance (MEI) method, originally developed to find numerically the truncation boundary coefficients of finite difference and finite element meshes. A significant feature of numerically derived testing functions is that they are 'adaptive', i.e., specific to the particular shape of the scatterer boundary and to the location of the function in the boundary.
机译:不变性测度方程(IE-MEI)的积分方程公式可被视为通过矩量法(MoM)离散化的组合场积分方程(CFIE)的特例,其中选择了不同的测试函数电场和磁场导致产生一个近似稀疏的线性系统来解决感应电流,在该系统中,大多数矩阵元素都可以忽略。这些新的测试函数是通过从不变性测量方程(MEI)方法中借用的过程进行数值推导的,该过程最初是为从数值上找到有限差分和有限元网格的截断边界系数而开发的。数值得出的测试函数的一个重要特征是它们是“自适应的”,即特定于散射体边界的特定形状以及函数在边界中的位置。

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