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首页> 外文期刊>Electromagnetics >Extension of Gaussian Beam Techniques for the Rapid Analysis of Electromagnetic Radiation/Scattering from Dielectric Reflector Antennas
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Extension of Gaussian Beam Techniques for the Rapid Analysis of Electromagnetic Radiation/Scattering from Dielectric Reflector Antennas

机译:高斯波束技术的扩展,用于快速分析介电反射天线的电磁辐射/散射

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摘要

A highly efficient Gaussian beam (GB) method was recently developed to provide a relatively rapid analysis of large, perfectly conducting reflector antennas. This GB method is very efficient because it represents the feed radiation in terms of a set of very few rotationally symmetric GBs and provides an essentially closed form solution for the reflection and diffraction of each GB incidence on the reflector surface. This method completely avoids the time-consuming numerical integrations in the evaluation of radiated fields over the large reflector surfaces that are generally required in conventional approaches of the physical optics and aperture integration techniques. This paper extends previous works to treat reflector antennas with dielectric surfaces that derive from many practical applications, including, for example, the analysis of the scattering from sub-reflectors having frequency selective surfaces in a dual-reflector antenna system. Numerical examples are used to validate this extended GB approach.
机译:最近开发了一种高效的高斯波束(GB)方法,可以相对快速地分析大型,导电性良好的反射器天线。该GB方法非常有效,因为它以一组极少的旋转对称GB表示进给辐射,并为反射器表面上每个GB入射的反射和衍射提供了一种基本封闭的形式。该方法完全避免了在物理光学和孔径积分技术的常规方法中通常需要的大反射器表面辐射场的评估中耗时的数值积分。本文扩展了先前的工作,以处理具有介电表面的反射器天线,该天线源自许多实际应用,包括例如分析双反射器天线系统中具有频率选择表面的子反射器的散射。数值示例用于验证这种扩展的GB方法。

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