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Numerical 3D Solutions of Maxwell Equations Based on Hybrid Method Combining Generalized T Matrix and Foldy-Lax Multiple Scattering Theory for Vegetation/Trees Scattering

机译:基于广义T矩阵与Foldy-Lax多重散射相结合的植被/树木散射的麦克斯韦方程组的3D数值解

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In this paper, we develop a hybrid method based on Foldy-Lax multiple scattering theory (FL) and generalized T matrix of a single object, for full wave simulations of vegetation/trees. The hybrid method of solving the Maxwell equations has three steps: (1) extracting the T matrix of every single object, (2) wave transformations and (3) solving the coupled wave interaction equations. To calculate the generalized T matrix of a single object, we use HFSS which is a 3D full-wave electromagnetic field simulation tool. The method of T matrix extraction from HFSS is verified by comparing with the analytical solution of a sphere. The method is applicable to find the T matrix for the complicated object where the analytical solutions are not available. Then, the wave transformations are performed based on the translation addition theorem. Numerical methods of calculating the transformation coefficients are developed. Finally, the wave interactions among the single objects are accounted for by FL. 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,我们开发了一种基于Foldy-Lax多重散射理论(FL)和单个对象的广义T矩阵的混合方法,用于植被/树木的全波模拟。求解麦克斯韦方程组的混合方法包括三个步骤:(1)提取每个单个对象的T矩阵;(2)波变换;(3)求解耦合波相互作用方程。为了计算单个对象的广义T矩阵,我们使用HFSS,它是3D全波电磁场仿真工具。通过与球体的解析解进行比较,验证了从HFSS中提取T矩阵的方法。该方法适用于寻找没有解析解的复杂对象的T矩阵。然后,基于平移相加定理执行波变换。提出了计算变换系数的数值方法。最后,FL解释了单个对象之间的波相互作用。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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