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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Electromagnetic diffraction of an obliquely incident plane wave by a right-angled anisotropic impedance wedge with a perfectly conducting face
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Electromagnetic diffraction of an obliquely incident plane wave by a right-angled anisotropic impedance wedge with a perfectly conducting face

机译:具有完美导电面的直角各向异性阻抗楔对斜入射平面波的电磁衍射

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摘要

The diffraction of an arbitrarily polarized electromagnetic plane wave obliquely incident on the edge of a right-angled anisotropic impedance wedge with a perfectly conducting face is analyzed. The impedance tensor on the loaded face has its principal anisotropy axes along directions parallel and perpendicular to the edge, exhibiting arbitrary surface impedance values in these directions. The proposed solution procedure applies both to the exterior and the interior right-angled wedges. The rigorous spectral solution for the field components parallel to the edge is determined through the application of the Sommerfeld-Maliuzhinets technique. A uniform asymptotic solution is provided in the framework of the uniform geometrical theory of diffraction (UTD). The diffracted field is expressed in a simple closed form involving ratios of trigonometric functions and the UTD transition function. Samples of numerical results are presented to demonstrate the effectiveness of the asymptotic expressions proposed and to show that they contain as limit cases all previous three-dimensional (3-D) solutions for the right-angled impedance wedge with a perfectly conducting face.
机译:分析了倾斜入射到具有完美导电面的直角各向异性阻抗楔的边缘上的任意极化电磁平面波的衍射。加载面上的阻抗张量的主各向异性轴沿平行于和垂直于边缘的方向,在这些方向上显示任意的表面阻抗值。拟议的解决方法适用于外部和内部直角楔形物。通过使用Sommerfeld-Maliuzhinets技术确定平行于边缘的场分量的严格频谱解决方案。在均匀衍射几何理论(UTD)的框架内提供了一个均匀渐近解。衍射场以简单的封闭形式表示,涉及三角函数与UTD跃迁函数的比率。给出了数值结果样本,以证明所提出的渐近表达式的有效性,并表明它们包含有限的情况,所有先前的具有完美导电面的直角阻抗楔形的三维(3-D)解。

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