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Implementation of High-Order Impedance Boundary Conditions in Some Integral Equation Formulations

机译:一些积分方程公式的高阶阻抗边界条件的实现

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摘要

The scattering problem from an object coated with materials is solved in the frequency domain. The coating is modeled by an impedance boundary condition (IBC) implemented in an integral equation (IE) prescribed on its outer surface. The Leontovich IBC (IBC0) is local and constitutes a poor approximation for low index coatings. A possible remedy is to employ higher order IBCs. These, as well as the IBC0, are implemented in two IE formulations: 1) CFIE with the electric current as sole unknown and 2) EFIE+MFIE where the unknowns are both the electric and magnetic currents. The problems raised by the discretization of the surface div and surface curl operators involved in the IE and IBC formulations are solved by employing a simple and computationally cheap technique, the accuracy of which is numerically assessed. The performances of the various IBC and IE formulations are evaluated by calculating the radar cross section (RCS) of some axisymmetric objects.
机译:来自被材料涂覆的物体的散射问题在频域中得以解决。涂层通过在其外表面规定的积分方程(IE)中实现的阻抗边界条件(IBC)建模。 Leontovich IBC(IBC0)是局部的,对低折射率涂层的评价不佳。一种可能的解决方法是采用更高阶的IBC。这些以及IBC0以两种IE公式实现:1)仅以电流为单位的CFIE,以及2)EFIE + MFIE,其中的未知数既是电流又是电流。 IE和IBC配方中涉及的表面div和表面卷曲算子离散化所引起的问题,可以通过采用一种简单且计算便宜的技术来解决,该技术的准确性通过数值评估。通过计算某些轴对称物体的雷达横截面(RCS),可以评估各种IBC和IE公式的性能。

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