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Hybrid method combining generalized T matrix of single objects and Foldy-Lax equations in NMM3D microwave scattering in vegetation

机译:植被中NMM3D微波散射的单目标广义T矩阵与Foldy-Lax方程相结合的混合方法

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In this paper, we develop a hybrid method for Numerical Maxwell Model of 3D (NMM3D) full wave simulations of vegetation/trees. The hybrid method includes three steps: (1) calculating the generalized T matrix of every single object, (2) wave transformations and (3) solving Foldy-Lax multiple scattering equations (FL). We utilize the commercial software HFSS to extract the T matrix of a single object. HFSS enables us to perform full wave simulations of single objects with complicated structures. To validate the T matrix extraction method, a sphere is used since it has analytical solutions for the T matrix. For wave transformations, we develop the robust numerical method, which is verified by the analytical solutions of spherical wave transformations. In solving FL, the wave interactions of the singles objects are taken into account. The results of the hybrid method agree with those of the HFSS brute force method. In comparison, the hybrid method is much more efficient than HFSS for vegetation scattering and applicable to large problems such as full wave simulations of a tree.
机译:在本文中,我们为植被/树木的3D(NMM3D)全波模拟数值麦克斯韦模型开发了一种混合方法。混合方法包括三个步骤:(1)计算每个单个对象的广义T矩阵;(2)波变换;(3)求解Foldy-Lax多重散射方程(FL)。我们利用商业软件HFSS提取单个对象的T矩阵。 HFSS使我们能够对结构复杂的单个对象执行全波仿真。为了验证T矩阵提取方法,使用了一个球体,因为它具有T矩阵的解析解。对于波变换,我们开发了鲁棒的数值方法,该方法已通过球面波变换的解析解得到了验证。在求解FL时,要考虑到单个对象的波浪相互作用。混合方法的结果与HFSS蛮力方法的结果一致。相比之下,对于植被散射,混合方法比HFSS效率更高,并且适用于大问题,例如树的全波模拟。

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