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Special problems in applying the physical optics method for backscatter computations of complicated objects

机译:将物理光学方法应用于复杂物体的反向散射计算中的特殊问题

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The backscatter computation of complicated objects is carried by the physical optics (PO) method, known as the vector Kirchoff approximation. The object is described by a geometrical model using flat plates (panels). These panels can be nonperfectly conducting and multilayered. The PO solution for the scattering matrix of a single multilayered panel is evaluated in detail using the Fresnel reflection coefficients. An example of the computed reflection coefficient of a two-layered medium is presented. The phase integral of the PO method is solved analytically. The hidden-surface problem is discussed, and the procedure for the treatment of doubly reflecting panels is described. For an ideal conducting cube with additional surfaces that generate shadow and double-reflection effects, the computed radar cross section (RCS) is compared with measurements. Computational results of the RCS for nonperfectly conducting panels are given.
机译:复杂物体的反向散射计算是通过物理光学(PO)方法进行的,该方法称为矢量基尔霍夫(Kirchoff)矢量逼近。使用平板(面板)的几何模型描述对象。这些面板可能导电不完善并且是多层的。使用菲涅耳反射系数详细评估单个多层面板的散射矩阵的PO解。给出了计算的两层介质反射系数的示例。 PO方法的相位积分通过解析求解。讨论了隐藏表面问题,并描述了处理双反射板的程序。对于具有产生阴影和双重反射效果的附加表面的理想导电立方体,将计算出的雷达横截面(RCS)与测量值进行比较。给出了非完全导电面板的RCS计算结果。

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