Broadband Frequency Selective Surface

D. Palma, W. C. Wong
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引用次数: 5

Abstract

Future communication satellites will use dichroic subreflectors to produce multiple focal regions from a single parabolic reflector. This additional focal region will allow for beams operating over different frequency bands to be produced by a single reflector and avoid the feed crowding or mechanical limitations current reflector antennas encounter. This paper presents parametric studies on a selected number of dichroic elements for possible use as a frequency selective subreflector. The theoretical and measured frequency response of tripoles and Jerusalem crosses are presented. This paper also addresses the design of multilayered dichroic panels to achieve improved gain slope and bandwidth. Designs capable of producing a 4:1 stopband and a 1.4:1 band separation for circular polarization and angles of incidence up to 40 degrees are shown.
宽频选择面
未来的通信卫星将使用二向色次反射器从一个抛物面反射器产生多个焦点区域。这个额外的焦点区域将允许在不同频带上运行的波束由单个反射器产生,并避免馈电拥挤或当前反射器天线遇到的机械限制。本文提出了参数研究的选择二向色元素的可能使用作为频率选择子反射器的数量。给出了三极子和耶路撒冷交叉的理论频率响应和实测频率响应。本文还讨论了多层二向色面板的设计,以提高增益斜率和带宽。设计能够产生4:1的阻带和1.4:1的带分离为圆偏振和入射角高达40度显示。
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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