K-/Ka-Band Planar Shared-Aperture Beam-Scanning Array Antenna for Simultaneous Transmitting and Receiving Low Earth Orbit Satellite Communication Terminal

光学 Ka波段 通信卫星 光圈(计算机存储器) 多波段设备 平面阵列 平面的 天线(收音机) 宽带 物理 卫星 计算机科学 电信 声学 天文 计算机图形学(图像)
作者
Jin Fan Zhang,Yu Jian Cheng
出处
期刊:IEEE Transactions on Antennas and Propagation [IEEE Antennas & Propagation Society]
卷期号:71 (8): 6617-6627 被引量:11
标识
DOI:10.1109/tap.2023.3284163
摘要

A planar shared-aperture beam-scanning array antenna for simultaneous transmitting and receiving satellite communication is proposed. The antenna operates in dual working bands with right-handed circular polarization (RHCP) from 17.7 to 21.2 GHz and left-handed circular polarization (LHCP) from 27.5 to 31.0 GHz. For the K-/Ka-band shared-aperture beam-scanning array antenna, the main challenge is to simultaneously achieve a wide beam scanning range, low profile, and high cross-band isolation. Compared to high-profile endfire duplexing or filtering antennas, planar laminated antennas have a stronger coupling between two elements operated at different frequency bands. In this design, two embedded two-stage filters are proposed and integrated into the dual-band feeders. The minimum spacing between the elements is 1/4 wavelength, and both in-band wideband impedance matching and cross-band filtering are performed simultaneously. First, two square lattices with a 45° rotation angle between them and a non-stacked topology are employed in the design of uniform arrays for both bands. This design is better suited for this filtering array. Second, to improve CP performance during beam scanning, the Ka-band-induced current on the K-band radiator should be suppressed. The rotary feed phase and the segmented patch are used to suppress the induced current and produce the reverse induced current in the small and large beam scanning area, respectively. Finally, the equivalent circuits and chain matrices are used to design the filtering feeders. As a result, the dual cross-band isolations increase to 38 and 41 dB. The total profile is less than 3.2 mm, much smaller than the existing K-/Ka-band filtering antenna's profile of 10 mm, and the proposed design also has a wide operating bandwidth and a large beam scanning range of ±60°.
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