带准微带馈电网络的低轮廓宽带高增益阵列天线

IF 1 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Dinglun He, Shufang Li, Li Deng
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引用次数: 0

摘要

在当代通信系统中,特别是军用雷达系统,对能够在x波段(8-12 GHz)工作的低轮廓、宽带、高增益天线有很大的需求。尽管对x波段天线进行了大量的研究,但它们通常具有诸如低增益、窄带宽或高姿态等局限性。本文介绍了一种结合了低姿态、宽带和高增益优点的单极子阵列天线。本文设计了一种基于准微带结构的并联馈电网络,解决了该类阵列馈电困难的问题。通过对阵列天线的参数优化,得到其整体尺寸为76 mm × 63 mm × 5 mm,工作频率范围为7.4 ~ 13.3 GHz,相对带宽为59%。对阵列天线原型进行了严格的测量,结果与仿真结果高度吻合。测量结果表明,该天线在13 ~ 14.3 dBi范围内具有稳定的增益,测量孔径效率最高可达47%。它易于制造,易于与通信系统集成。本设计对宽带天线的研究也有一定的促进作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Profile Wideband High-Gain Array Antenna With Quasi-Microstrip Feeding Network

In contemporary communication systems, especially military radar systems, there is a significant demand for low-profile, wideband, high-gain antennas that can operate across the X-band (8–12 GHz). Despite numerous studies on X-band antennas, they are often characterized by limitations such as low gain, narrow bandwidth, or a high profile. This letter presents a monopole array antenna that combines the advantages of low-profile, wideband, and high-gain. And a parallel feeding network based on a quasi-microstrip structure is designed in this letter, which solves the problem of difficult feeding for this type of array. Through parameter optimization of the array antenna, its overall size is obtained as 76 mm × 63 mm × 5 mm, with an operational frequency range of 7.4–13.3 GHz and a relative bandwidth of 59%. Rigorous measurement of the array antenna's prototype has been conducted, revealing a high degree of congruence with simulation results. The measured results show that the antenna has a stable gain in the range of 13–14.3 dBi, and the highest measured aperture efficiency reached 47%. It is facile to fabricate and readily integrates with communication systems. This design also has a certain promotional effect on the research of wideband antennas.

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来源期刊
Microwave and Optical Technology Letters
Microwave and Optical Technology Letters 工程技术-工程:电子与电气
CiteScore
3.40
自引率
20.00%
发文量
371
审稿时长
4.3 months
期刊介绍: Microwave and Optical Technology Letters provides quick publication (3 to 6 month turnaround) of the most recent findings and achievements in high frequency technology, from RF to optical spectrum. The journal publishes original short papers and letters on theoretical, applied, and system results in the following areas. - RF, Microwave, and Millimeter Waves - Antennas and Propagation - Submillimeter-Wave and Infrared Technology - Optical Engineering All papers are subject to peer review before publication
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