Radiation Resistance of Resonant Impedance Monopole Placed on Metal Square Screen

N. Yeliseyeva, S. Berdnik, V. Katrich, S. Pshenichnaya
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引用次数: 2

Abstract

The asymptotical solution of the 3-D vector problem of diffraction of the field of the monopole with the uniform distributed surface impedance, placed on the ideally conducting rectangular screen with the sides sizes L and $W$ is obtained. Within the frame of the uniform geometrical theory of diffraction the radiation field in a far zone is represented as the sum of the geometric optics field from an impedance monopole placed on infinite screen, and the diffracted fields from the rectangular screen edges. The radiation resistances are calculated by the Poynting vector method as the functions of the monopole's surface impedance and the sizes of monopole and screen. The input impedances of the same monopoles on the square screens have calculated using commercial software too. It is shown that at all surface impedances and monopole's lengths the radiation and input resistances reach maximum at L=W=0.9of wavelength.
金属方形屏上谐振阻抗单极子的辐射电阻
得到了放置在边长为L和$W$的理想导电矩形屏上具有均匀分布表面阻抗的单极子场衍射的三维矢量问题的渐近解。在均匀几何衍射理论的框架内,远区辐射场表示为放置在无限屏上的阻抗单极子的几何光学场与矩形屏边的衍射场之和。利用坡印亭矢量法计算了单极子表面阻抗与单极子和屏尺寸的函数关系。用商业软件计算了方形屏上相同单极子的输入阻抗。结果表明,在所有表面阻抗和单极子长度下,在波长L=W=0.9时,辐射电阻和输入电阻达到最大值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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