积分方程
基函数
电场积分方程
伽辽金法
数学分析
离散化
散射
数学
基础(线性代数)
体积积分
麦克斯韦方程组
计算电磁学
矩量法(概率论)
电磁场
物理
几何学
光学
有限元法
统计
估计员
热力学
量子力学
作者
Johannes Markkanen,Cai‐Cheng Lu,Xiande Cao,Pasi Ylä‐Oijala
标识
DOI:10.1109/tap.2012.2189704
摘要
The volume integral equation method is applied in electromagnetic scattering from arbitrarily shaped three-dimensional inhomogeneous objects. The properties of the volume electric and magnetic field integral equations (VEFIE and VMFIE) are investigated. Numerical experiments show that if the Galerkin's method with the lowest mixed-order basis functions is used to discretize the equations the accuracy of the VMFIE can be significantly poorer than the accuracy of the VEFIE, in particular, for high-contrast objects at high frequencies. The accuracy of the VMFIE can be essentially improved with full first order (linear) basis functions. The linear basis functions are found to be useful also when a single volume integral equation is used to model a general scatterer where both permittivity and permeability differ from the background.
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