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A high-frequency based asymptotic solution for surface fields on a source-excited sphere with an impedance boundary condition

机译:具有阻抗边界条件的源激发球体上表面场的高频基于渐近溶液

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摘要

A high-frequency asymptotic solution based on the Uniform Geometrical Theory of Diffraction (UTD) is proposed for the surface fields excited by a magnetic source located on the surface of a sphere with an impedance boundary condition. The assumed large parameters, compared to the wavelength, are the radius of the sphere and the distance between the source and observation points along the geodesic path, when both these points are located on the surface of the sphere. Different from the UTD-based solution for a perfect electrically conducting sphere, some higher-order terms and derivatives of Fock type integrals are included as they may become important for certain surface impedance values as well as for certain separations between the source and observation points. This work is especially useful in the analysis of mutual coupling between conformal slot/aperture antennas on a thin material coated or partially coated sphere. Copyright 2010 by the American Geophysical Union.
机译:基于衍射(UTD)均匀几何理论的高频渐近溶液(UTD)被提出了由位于球体表面上的磁源激发的表面场,其具有阻抗边界条件。当两个这些点位于球体的表面上时,与波长相比,假设的大的参数是球体的半径和沿着测地路径的源极和观察点之间的距离。与完美导电球的基于UTD的解决方案不同,包括一些高阶术语和套型积分的衍生物,因为它们对某些表面阻抗值以及源和观察点之间的某些分离可能是重要的。该工作对于分析薄材料涂覆或部分涂覆的球体上的共形槽/孔天线之间的相互耦合的分析特别有用。版权所有2010由美国地球物理联盟。

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  • 作者

    B. Alisan; V. B. Ertürk;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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