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Time-Domain Line-Integral Representations of Physical-Optics Scattered Fields

机译:物理光学散射场的时域线积分表示

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A time-domain (TD) line-integral (LI) representation of the physical-optics (PO) radiation integral is developed for the scattering from a perfectly conducting surface illuminated by an electric Hertzian dipole. The proposed LI representation, which is valid and singularity-free for all near-field observers, is derived directly in the TD by introducing dyad potentials. This TD representation can be further expressed in terms of geometric-optics and boundary-wave components of the scattering mechanisms, as in the conventional frequency-domain LI representations. Using the proposed LI representation, the computational complexity is reduced by an order of the scatterer's linear electric size, compared with the straightforward numerical quadrature of the PO surface integral. Simple and complicated numerical examples are presented to demonstrate the efficiency and accuracy of the proposed TD-LI algorithm.
机译:物理光(PO)辐射积分的时域(TD)线积分(LI)表示被开发用于从电赫兹偶极子照射的完美导电表面的散射。提议的LI表示对所有近场观察者有效且无奇点,它是通过引入二元势直接在TD中导出的。如在常规频域LI表示中一样,该TD表示可以进一步用散射机构的几何光学和边界波分量来表示。与PO表面积分的直接数值正交函数相比,使用所提出的LI表示,散射体的线性电尺寸降低了计算复杂度。给出了简单和复杂的数值示例,以证明所提出的TD-LI算法的效率和准确性。

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