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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Numerical study of diffraction and slope-diffraction at anisotropicimpedance wedges by the method of parabolic equation: space waves
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Numerical study of diffraction and slope-diffraction at anisotropicimpedance wedges by the method of parabolic equation: space waves

机译:用抛物线方程:空间波数值研究各向异性阻抗楔形体的衍射和斜率衍射

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The method of parabolic equation (PE) has been successfully applied to the numerical determination of diffraction, slope-diffraction, and multiple-diffraction coefficients of scalar impedance wedges illuminated by a line source. As a continuation, this paper studies-for the first time to the authors' knowledge-another important canonical problem for the uniform geometrical theory of diffraction (UTD), namely, diffraction and slope-diffraction of an incident cylindrical wave at wedges with anisotropic impedance surfaces, by using the same method. For the diffracted fields, the exact Helmholtz equation is asymptotically approximated by the corresponding parabolic one. It is proved that the sufficient conditions for the unique solution of the Helmholtz equation also guarantee the uniqueness of the solution of the parabolic one. The latter is then efficiently solved by using Crank-Nicholson finite-difference (FD) scheme. Due to the lack of exact solutions, the PE results were compared to uniform asymptotic theory of diffraction (UAT) ones for weak anisotropy and, in this case, very good agreement has been achieved. The diffraction and slope-diffraction behavior dependent upon the measure of the weakness of the anisotropy has been demonstrated by several examples
机译:抛物线方程(PE)方法已成功应用于线源照射的标量阻抗楔形的衍射,斜率衍射和多衍射系数的数值确定。作为继续,本文首次研究了作者的知识-均匀衍射几何理论(UTD)的另一个重要的规范问题,即具有各向异性阻抗的楔形上入射圆柱波的衍射和斜率衍射表面,使用相同的方法。对于衍射场,确切的亥姆霍兹方程由对应的抛物线方程渐近逼近。证明了亥姆霍兹方程唯一解的充分条件也保证了抛物方程唯一解的唯一性。然后,可以使用Crank-Nicholson有限差分(FD)方案有效地解决后者。由于缺乏精确解,因此将PE结果与均匀各向异性的UAT衍射的渐近理论进行了比较,在这种情况下,已经取得了很好的一致性。通过几个例子证明了依赖于各向异性弱度的量度的衍射和斜率衍射行为。

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