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Shadow boundary incremental length diffraction coefficients appliedto scattering from 3-D bodies

机译:阴影边界增量长度衍射系数应用于3-D物体的散射

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摘要

Shadow boundary incremental length diffraction coefficients (SBILDCs) are high-frequency fields designed to correct the physical optics (PO) field of a three-dimensional (3-D) perfectly electrically conducting scatterer. The SBILDCs are integrated along the shadow boundary of the 3-D object to approximate the field radiated by the nonuniform shadow boundary current (the difference between the exact and PO currents near the shadow boundary). This integral is added to the PO field to give an approximation to the exact scattered field that takes into account both PO and nonuniform shadow boundary currents on the scatterer. Like other incremental length diffraction coefficients, any SBILDC is based on the use of a 2-D canonical scatterer to locally approximate the surface of the 3-D scatterer to which it is applied. Circular cylinder SBILDCs are, to date, the only SBILDCs that have been obtained in closed form. In this paper, these closed-form expressions are validated by applying them for the first time to a 3-D scatterer with varying radius of curvature-the prolate spheroid. The results obtained clearly demonstrate that for bistatic scattering the combined PO-SBILDC approximation is considerably more accurate than the PO field approximation alone
机译:阴影边界增量长度衍射系数(SBILDC)是高频场,旨在校正三维(3-D)完美导电散射体的物理光学(PO)场。 SBILDC沿着3-D对象的阴影边界积分,以近似估计非均匀阴影边界电流(靠近阴影边界的精确电流与PO电流之差)所辐射的场。该积分被添加到PO场中,以近似考虑到散射体上的PO和不均匀阴影边界电流的精确散射场。像其他增量长度衍射系数一样,任何SBILDC都基于使用2-D规范散射体来局部估计要应用其的3-D散射体的表面。迄今为止,圆柱SBILDC是唯一以封闭形式获得的SBILDC。在本文中,这些封闭形式的表达式通过将它们首次应用于曲率半径变化的3-D散射体(长椭球体)而得到验证。获得的结果清楚地表明,对于双基地散射,组合的PO-SBILDC逼近比单独的PO场逼近要精确得多。

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