Miniaturization of Ultrawideband Horizontally Polarized Omnidirectional Vivaldi Antenna Arrays Using Nonuniform Elements

IF 5.8 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Antennas and Propagation Pub Date : 2024-11-27 DOI:10.1109/TAP.2024.3503775
Sui-Bin Liu;Fu-Shun Zhang;Guo-Jun Xie;Liwei Song;Yong-Xin Guo
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Abstract

In this article, two new methods are proposed for miniaturizing planar ultrawideband (UWB) horizontally polarized (HP) omnidirectional Vivaldi antenna arrays. In the first method, the order of a power divider (PD) is decreased by means of feeding two neighboring Vivaldi antenna elements in series as a subarray or termed as a double-Vivaldi antenna element, and thus, the layout area required for a feeding network is reduced. Therefore, the layout problem of a conventional circular Vivaldi antenna array with a confined size is solved. Meanwhile, nonuniform elements with different taper rates are used to solve the in-band peak gain variation that is caused by a disc monopole mode. In this way, a nonuniform series-fed double-Vivaldi antenna array is presented. In the second method, a folded loop structure is introduced for an electrical size reduction of the aforementioned array. As a result, a lower resonant frequency is obtained. The measured results show that the final design has the advantages of a large operating bandwidth, a small footprint of $\pi \times $ ( $0.284\lambda _{\max })^{2}$ , and a high gain. Besides, a clear design flowchart is given.
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利用非均匀元件实现超宽带水平极化全向维瓦尔第天线阵列的小型化
本文提出了两种小型化平面超宽带(UWB)水平极化(HP)全向维瓦尔第天线阵列的新方法。在第一种方法中,通过将两个相邻的Vivaldi天线单元作为子阵列串联馈送或称为双Vivaldi天线单元来降低功率分配器(PD)的阶数,从而减少馈送网络所需的布局面积。从而解决了传统尺寸受限的圆形维瓦尔第天线阵的布局问题。同时,采用不同锥度的非均匀元件来解决圆盘单极模式引起的带内峰值增益变化。采用这种方法,提出了一种非均匀串联馈电双维瓦尔第天线阵列。在第二种方法中,为了减小上述阵列的电气尺寸,引入了折叠回路结构。因此,获得了较低的谐振频率。实测结果表明,最终设计具有工作带宽大、占用$\pi \times $ ($0.284\lambda _{\max })^{2}$)空间小、增益高的优点。并给出了清晰的设计流程图。
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来源期刊
CiteScore
10.40
自引率
28.10%
发文量
968
审稿时长
4.7 months
期刊介绍: IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques
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Institutional Listings IEEE Transactions on Antennas and Propagation Information for Authors Distributed Antennas and Near-Field Applications for Future Wireless Systems Emerging Materials and Enabling Technologies for Advancing Antenna Systems: From Design to Manufacturing Institutional Listings
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