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Heuristic Edge Diffraction Coefficient for the Surface Field of an Equal Curved Face Wedge: TE Plane Wave Illumination

机译:等曲面楔形表面场的启发式边缘衍射系数:TE平面波照明

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We present a diffraction coefficient for calculating the field on the surface of a perfectly conducting two-dimensional curved face wedge, illuminated by a TE plane wave. The surface field consists of a geometrical optics (GO) field supplemented by a creeping wave launched by edge diffraction. The GO field is that which would exist on the circular cylinder of which the wedge face is a part, subject to the same illumination. The diffracted field takes the form of a creeping wave and is related to the incident field at the edge by the new diffraction coefficient DELTA. DELTA is found by requiring the sum of the diffracted and GO fields to equal the correct field determined by numerical methods in a range of representative cases. DELTA is found to be a function of distance close to the edge and then becomes constant with increasing distance; thus, our method is valid for all distances from the edge, including zero. We have developed relatively simple analytic expressions for DELTA as a function of plane wave incidence direction, wedge angle, radius of curvature of the surfaces and distance of the field point from the edge. These expressions have been found to give good prediction of surface magnetic field for cases different from those for which the original data was calculated.
机译:我们给出了一个衍射系数,用于计算由TE平面波照射的完美导电的二维曲面楔形表面的场。表面场由几何光学(GO)场组成,该场由边缘衍射发射的蠕变波补充。 GO场是在存在相同照明的情况下存在于楔面为一部分的圆柱体上的场。衍射场采取蠕变波的形式,并通过新的衍射系数DEL与边缘处的入射场相关。通过要求衍射和GO场的总和等于在一系列典型情况下通过数值方法确定的正确场来找到DELTA。发现DELTA是靠近边缘的距离的函数,然后随着距离的增加而变为常数。因此,我们的方法适用于距边缘的所有距离,包括零。我们已经针对平面波入射方向,楔角,表面曲率半径和场点距边缘的距离开发了相对简单的DELTA解析表达式。已经发现这些表达式对于与计算原始数据的情况不同的情况可以很好地预测表面磁场。

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