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Omnidirectional and Circularly Polarized Slotted Antenna Array With Increased Bandwidth Performance by Using Nonidentical Waveguide Slots

机译:通过使用不相同的波导缝隙来提高带宽性能的全向和圆极化缝隙天线阵列

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摘要

In this paper, the design, production, and results of an omnidirectional and circularly polarized antenna for satellite communication applications such as telemetry or telecommand are explained. The antenna is fed by a special transition structure between rectangular waveguide to circular waveguide in order to provide symmetrical circular waveguide mode of TM01 and eliminate dominant but asymmetric mode of TE11. The radiation part on the antenna has the geometry of inclined waveguide slots placed in a rotationally symmetric way on a circular waveguide and two radially outward parallel cylindrical plates in order to provide circular polarization. In the design of the antenna, nonidentical slots are used on the circular waveguide where half of the total number of slots is reduced to increase the bandwidth of the antenna. The realized antenna is found to give about 5-6% impedance bandwidth around 12GHz where it is just approximately 2.5% when all slots in array are identical. The usage of nonidentical slots results in degradation of gain variation and axial ratio performances as compared to the antennas with identical slots; however, it still performs gain variation less than 3dB over full azimuth plane, and axial ratio under 3dB over full azimuth plane and elevation beamwidth of minimum 50 degrees for the given bandwidth.
机译:在本文中,说明了用于卫星通信应用(例如遥测或遥控)的全向和圆极化天线的设计,生产和结果。天线由矩形波导到圆形波导之间的特殊过渡结构供电,以提供TM01的对称圆形波导模式并消除TE11的主要但非对称模式。天线上的辐射部分具有倾斜的波导槽几何形状,该几何形状以旋转对称的方式放置在圆形波导和两个径向向外平行的圆柱板上,以提供圆极化。在天线的设计中,圆形波导上使用了不同的缝隙,其中缝隙总数的一半减少了,以增加天线的带宽。发现所实现的天线在12GHz附近可提供约5-6%的阻抗带宽,而在阵列中的所有插槽相同时,阻抗带宽仅为2.5%。与具有相同缝隙的天线相比,使用不同缝隙会导致增益变化和轴向比率性能下降。但是,在给定带宽下,其在整个方位平面上的增益变化仍小于3dB,在整个方位平面上的轴向比在3dB以下,仰角波束宽度至少为50度。

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