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Cylindrical-wave approach for the electromagnetic scattering problem by buried two-dimensional objects

机译:圆柱波方法用于掩埋二维物体的电磁散射问题

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A spectral-domain method, for the solution of the two-dimensional electromagnetic plane-wave scattering by a finite set of perfectly-conducting or dielectric cylinders buried in a dielectric half-space, has been developed. The scattered Held is represented in terms of a superposition of cylindrical waves, and use is made of the plane-wave spectrum to take into account the reflection and transmission Of Such waves by the interface. The problem is solved for both the near- and the far-field regions, for TM and TE polarizations. In this work we briefly resume file theoretical basis of our approach. For configurations in which more obstacles are buried in the ground, and they are near to one another, we give details about the convergence rate of our method, and about the properties Of our algorithms for file integration of cylindrical functions. With our technique it is Possible to simulate two-dimensional buried obstacles of general shape, by means of a Suitable set Of circular-section cylinders: in this paper we show preliminary results Of Simulations carried out using arrays of same-radius circular cylinders, and of different-radius circular cylinders.
机译:为了解决二维电磁平面波散射问题,人们开发了一种频谱域方法,用于通过掩埋在电介质半空间中的有限组理想导体或电介质圆柱体来解决该问题。散射的赫德用圆柱波的叠加表示,并利用平面波谱考虑界面对此类波的反射和透射。对于TM和TE极化,该问题对于近场和远场区域均得以解决。在这项工作中,我们简要地恢复了我们方法的文件理论基础。对于其中更多障碍物埋在地下且彼此接近的配置,我们提供了有关方法收敛速度以及圆柱函数文件集成算法的属性的详细信息。利用我们的技术,可以通过一组合适的圆形截面圆柱体来模拟具有一般形状的二维掩埋障碍物:在本文中,我们展示了使用相同半径的圆柱体阵列进行模拟的初步结果,并且不同半径的圆柱体。

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