Demonstration of a Wideband Multipolarization Transmitarray Antenna for Satellite Communication

IF 0.9 4区 工程技术 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Luming Zhang, Hao Jiang, Yihang Li, Yixin Suo, Fan Yang, Feiliang Chen, Mo Li, Qiye Wen, Jian Zhang
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引用次数: 0

Abstract

To meet the requirements of satellite communication (SATCOM), in this paper, a wideband high stability transmitarray antenna (TA) for SATCOM is proposed. The TA is composed of 225 metal-only unit cells that comprise three metallic layers with an air spacer in between. High stability is capable by adopting a simple metallic square loop and two pairs of orthogonal stubs with a 1 mm thickness of the layer, which ensures lower assembly complexity and higher integration. The proposed unit cell can also support linear polarization (LP) wave excitation and circular polarization (CP) wave excitation simultaneously. Meanwhile, the metal-only unit cell can operate without dielectric loss, which leads to higher working efficiency. By adjusting feature sizes, eight different kinds of the unit cell are designed to realize a 3-bit TA which enables obtaining a gain of 23.53 dBi. Finally, four TA prototypes have been fabricated and tested successfully. The measured result shows a 28.5% 3 dB gain bandwidth from 30 GHz to 40 GHz, which is in good consistency with the simulated design. This compact and mechanical robustness design provides an alternative proposal for SATCOM.

Abstract Image

用于卫星通信的宽带多极化发射阵列天线的演示
为了满足卫星通信(SATCOM)的要求,本文提出了一种用于卫星通信的宽带高稳定性发射阵列天线(TA)。TA由225个纯金属晶胞组成,这些晶胞包括三个金属层,中间有一个空气间隔物。通过采用一个简单的金属方形环和两对具有1 mm厚度的层,这确保了更低的组装复杂性和更高的集成度。所提出的晶胞还可以同时支持线性极化(LP)波激发和圆极化(CP)波激发。同时,纯金属晶胞可以在没有介电损耗的情况下工作,从而提高了工作效率。通过调整特征尺寸,设计了八种不同类型的晶胞,以实现3位TA,从而获得23.53的增益 dBi。最后,成功地制造并测试了四个TA原型。测量结果显示28.5%3 30的dB增益带宽 GHz至40 GHz,这与模拟设计具有良好的一致性。这种紧凑且机械坚固的设计为卫星通信提供了一种替代方案。
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来源期刊
CiteScore
4.00
自引率
23.50%
发文量
489
审稿时长
3 months
期刊介绍: International Journal of RF and Microwave Computer-Aided Engineering provides a common forum for the dissemination of research and development results in the areas of computer-aided design and engineering of RF, microwave, and millimeter-wave components, circuits, subsystems, and antennas. The journal is intended to be a single source of valuable information for all engineers and technicians, RF/microwave/mm-wave CAD tool vendors, researchers in industry, government and academia, professors and students, and systems engineers involved in RF/microwave/mm-wave technology. Multidisciplinary in scope, the journal publishes peer-reviewed articles and short papers on topics that include, but are not limited to. . . -Computer-Aided Modeling -Computer-Aided Analysis -Computer-Aided Optimization -Software and Manufacturing Techniques -Computer-Aided Measurements -Measurements Interfaced with CAD Systems In addition, the scope of the journal includes features such as software reviews, RF/microwave/mm-wave CAD related news, including brief reviews of CAD papers published elsewhere and a "Letters to the Editor" section.
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