Asymptotic theory of local maximum of back scattering from thin conducting polygon with large dimensions

R. Vaganov, V. Solosin
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Abstract

Let plane electromagnetic wave is incident on thin conductive polygon with large, in compare with wavelength, dimensions. The problem is to determine the back scattering from this polygon. A possible asymptotic solution is suggested by the problem geometry - in the context of geometry diffraction theory (GDT). A field scattered by polygon may be considered as a superposition of ray fields of three types. First, in accordance with geometry optics principle, the incidence ray is reflected from plane surface of polygon. Second, diffraction rays arise from rectilinear edges of polygon. Both types of the rays are well known. Finally, it should be added the rays from the tops of polygon.
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大尺寸薄导电多边形背散射局部最大值的渐近理论
让平面电磁波入射到比波长、尺寸大的薄导电多边形上。问题是确定这个多边形的反向散射。在几何衍射理论(GDT)的背景下,提出了一个可能的渐近解。被多边形散射的场可以看作是三种类型的射线场的叠加。首先,根据几何光学原理,从多边形的平面反射入射光线。第二,衍射射线来自多边形的直线边缘。这两种射线都是众所周知的。最后,它应该添加光线从多边形的顶部。
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