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Computation of Scattering by DB Objects With Surface Integral Equation Method

机译:使用表面积分方程法计算DB对象的散射

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摘要

Electromagnetic scattering by objects with a DB boundary condition (normal components of the electric and magnetic flux densities ${mbi D}$ and ${mbi B}$ vanish at the boundary surface) is investigated. Scattering of arbitrary-shaped three-dimensional objects is analyzed with the surface integral equation method. A significant difference compared to the more conventional boundary conditions is that the uniqueness of the solution to the scattering problem with DB boundary depends on the connectivity of the object. For a simply connected object the solution is unique but for a multiply connected object some additional conditions are required. It appears that these additional conditions are satisfied if divergence-free basis functions are used to expand the unknown surface current densities. The developed method is applied to calculate polarizabilities, scattering efficiencies, and radar cross sections (RCS) of the DB sphere and cube, and the results are compared with those of the PEC cube and sphere.
机译:研究了具有DB边界条件(在边界表面消失的电磁通量密度$ {mbi D} $和$ {mbi B} $的正态分量)的对象的电磁散射。利用表面积分方程法分析了任意形状的三维物体的散射。与更常规的边界条件相比,一个显着的差异是具有DB边界的散射问题的解的唯一性取决于对象的连通性。对于简单连接的对象,解决方案是唯一的,但对于多重连接的对象,则需要一些附加条件。如果使用无散度基函数扩展未知表面电流密度,则似乎满足了这些附加条件。将所开发的方法应用于计算DB球体和立方体的极化率,散射效率和雷达截面(RCS),并将结果与​​PEC立方体和球体的结果进行比较。

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