一种采用有源频率选择表面的宽带高增益开关波束天线系统

IF 1.1 4区 计算机科学 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Zhenzhen Chen, Huimin Qiao, Qiang Chen, Xing Chen
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引用次数: 0

摘要

采用有源频率选择表面(AFSS)的天线可以以较低的成本实现快速波束扫描。在本研究中,提出了一种具有高增益和360°覆盖水平平面的开关波束天线。AFSS的12列组成一个圆柱形腔,在PIN二极管的控制下对入射电磁波进行传输或反射。得益于放置在腔中心的同轴连续横向短段阵列和使用4个单元产生高增益全向辐射,所提出的天线可以实现高度定向的开关波束。设计、制作并测量了天线样机。结果表明,该方法达到了|S11| <−10db带宽为12.9%,并且能够在5.8 GHz工作频率下以高达13.6 dBi的高增益环绕方位面进行波束扫描。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A wideband and high-gain switched-beam antenna system using active frequency selective surface

A wideband and high-gain switched-beam antenna system using active frequency selective surface

Antennas using the active frequency selective surface (AFSS) can achieve fast beam-scanning ability at a low cost. In this study, a switched beam antenna with a high gain and 360° coverage in the horizontal plane is proposed. Twelve columns of AFSS form a cylindrical cavity and are transmissive or reflective to the incident electromagnetic waves under the control of PIN diodes. Benefiting from a coaxial continuous transverse stub array placed at the cavity centre and using 4 units to generate a high gain omnidirectional radiation, the proposed antenna can realise a highly directive switched beam. An antenna prototype is designed, fabricated and measured. Results show that it achieves a |S11| < −10 dB bandwidth of 12.9% and is able to sweep its beam around the azimuth plane with a high gain up to 13.6 dBi at 5.8 GHz working frequency.

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来源期刊
Iet Microwaves Antennas & Propagation
Iet Microwaves Antennas & Propagation 工程技术-电信学
CiteScore
4.30
自引率
5.90%
发文量
109
审稿时长
7 months
期刊介绍: Topics include, but are not limited to: Microwave circuits including RF, microwave and millimetre-wave amplifiers, oscillators, switches, mixers and other components implemented in monolithic, hybrid, multi-chip module and other technologies. Papers on passive components may describe transmission-line and waveguide components, including filters, multiplexers, resonators, ferrite and garnet devices. For applications, papers can describe microwave sub-systems for use in communications, radar, aerospace, instrumentation, industrial and medical applications. Microwave linear and non-linear measurement techniques. Antenna topics including designed and prototyped antennas for operation at all frequencies; multiband antennas, antenna measurement techniques and systems, antenna analysis and design, aperture antenna arrays, adaptive antennas, printed and wire antennas, microstrip, reconfigurable, conformal and integrated antennas. Computational electromagnetics and synthesis of antenna structures including phased arrays and antenna design algorithms. Radiowave propagation at all frequencies and environments. Current Special Issue. Call for papers: Metrology for 5G Technologies - https://digital-library.theiet.org/files/IET_MAP_CFP_M5GT_SI2.pdf
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