首页> 外文会议>IEEE International Symposium on Antennas and Propagation;USNC/URSI National Radio Science Meeting >Fast Analysis of Three- Dimensional Scattering from a buried object under a Dielectric Rough Surface using the Characteristic Basis Function Method
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Fast Analysis of Three- Dimensional Scattering from a buried object under a Dielectric Rough Surface using the Characteristic Basis Function Method

机译:特征基函数法快速分析介电粗糙表面下掩埋物体的三维散射

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The Characteristic Basis Function Method (CBFM) is adapted to analyze the problem of electromagnetic scattering from a 3-D object buried under a 2-D dielectric rough surface. A current-based physical optics (PO) method, called Modified Equivalent Current Approximation (MECA), is used for efficient derivation of the Characteristic Basis Functions (CBFs) for the dielectric body. The interaction between the rough surface and the object is rigorously taken into account to derive accurate solutions for the electric and magnetic current densities on the rough surface. In addition, the adaptive cross approximation (ACA) is implemented to expedite the generation of the reduced matrix. Finally, scattered fields in the far zone are calculated by using the method of azimuthal angular averaging. The proposed approach is demonstrated to be accurate and efficient. Moreover, it is well-suited for applications when the solution for multiple excitations is required.
机译:特征基函数方法(CBFM)适用于分析来自埋在2-D电介质粗糙表面下的3-D对象的电磁散射问题。一种基于电流的物理光学(PO)方法,称为修正等效电流近似(MECA),用于有效推导介电体的特征基础函数(CBF)。严格考虑粗糙表面与物体之间的相互作用,以得出粗糙表面上电流和磁电流密度的精确解。此外,自适应交叉逼近(ACA)的实施可加快简化矩阵的生成。最后,采用方位角平均法计算了远区的散射场。所提出的方法被证明是准确和有效的。此外,它非常适合需要多重激励解决方案的应用。

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