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Entire-Domain Basis Functions for Scattering From Large Curved Surfaces Formulated by Transformation Optics

机译:用变换光学器件对从大曲面散射的整个域基函数

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摘要

A complete set of entire-domain basis functions are introduced for the analysis of scattering from bodies with curved surfaces; they are defined via the application of a generalization of the Shannon sampling theorem. These basis functions are defined for curved patches with arbitrary contours, via a three-step procedure. First, the curved patch is mapped, via Transformation Optics, onto a flat parametric domain surrounded by a virtual anisotropic inhomogeneous space. Next, linear-phase functions are defined on the parametric flat domain; the sufficient and non-redundant number of functions is found by using a spectral domain “completeness relationship” of the delta function. Finally, the back-transformation from flat anisotropic to curved isotropic space yields the basis functions for the curved patch. The number of basis functions so obtained matches the degrees of freedom of the field known in the literature. Numerical results show the effectiveness of the representation for both fields and currents.
机译:引入了一套完整的全域基函数,用于分析曲面物体的散射。它们是通过应用香农采样定理的一般性来定义的。这些基本功能通过三步过程为具有任意轮廓的弯曲斑块定义。首先,通过“变换光学”将弯曲的面片映射到由虚拟各向异性不均匀空间包围的平坦参数域。接下来,在参数平坦域上定义线性相位函数。通过使用增量函数的频谱域“完整性关系”,可以找到足够数量且非冗余的函数。最后,从平面各向异性空间向弯曲各向同性空间的逆变换产生了弯曲斑块的基函数。如此获得的基函数的数量与文献中已知的场的自由度相匹配。数值结果表明了该表示对于磁场和电流的有效性。

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