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A Hybrid 3DMLUV-FIA Method for Scattering from a 3D Dielectric Object above a 2D Dielectric Rough Surface

机译:从2D介电质粗糙表面上方的3D介电质物体散射的混合3DMLUV-FIA方法

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The electromagnetic scattering from the composite model of a three-dimensional (3D) dielectric object located above a two-dimensional (2D) dielectric rough surface is analyzed in this work. Poggio, Miller, Chang, Harrington, Wu, and Tsai (PMCHWT) integral equations are discretized by the method of moments (MoM) into a matrix which is solved by Biconjugate Gradients Stabilized (BICGSTAB) method. Method of 3DMLUV was used for PEC object located above rough surface. Comparing to the case when object and rough surface are both PEC, the memory requirement and computational complexity for dielectric models are increased due to doubled unknown number. Moreover, compared to dielectric object in free space, the coupling between dielectric object and dielectric rough surface will result in complicated numerical simulation. To solve this problem, the updated rank based 3D Multilevel UV (3DMLUV) method is employed to reduce memory consumption and CPU time overhead. The 3DMLUV has been successfully applied in the scattering of PEC targets; however, when the object or rough surface becomes dielectric, the coupling between dielectric object and dielectric rough surface will lead to slow constriction. Therefore, the Fast Iterative Approach (FIA) is applied to further speed up the constricted speed of the matrix required in 3DMLUV. The efficiency, stability, and accuracy of the proposed method are demonstrated in a variety of scattering problems.
机译:在这项工作中,分析了位于二维(2D)介电粗糙表面上方的三维(3D)介电对象的复合模型的电磁散射。通过矩量法(MoM)将Poggio,Miller,Chang,Harrington,Wu和Tsai(PMCHWT)积分方程离散化为矩阵,然后通过双共轭梯度稳定(BICGSTAB)方法求解该矩阵。 3DMLUV方法用于位于粗糙表面上方的PEC对象。与对象和粗糙表面都是PEC的情况相比,电介质模型的存储需求和计算复杂度由于未知数加倍而增加。而且,与自由空间中的电介质相比,电介质与粗糙表面之间的耦合将导致复杂的数值模拟。为解决此问题,采用了基于更新等级的3D多级UV(3DMLUV)方法来减少内存消耗和CPU时间开销。 3DMLUV已成功应用于PEC目标的散射;然而,当物体或粗糙表面变成电介质时,电介质物体和电介质粗糙表面之间的耦合将导致缓慢的收缩。因此,快速迭代方法(FIA)用于进一步加快3DMLUV中所需矩阵的压缩速度。在各种散射问题中证明了该方法的效率,稳定性和准确性。

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