利用 EBG 结构设计可重构带缺口宽带天线

Xiaoyan Zhang, Ziao Li, Aiyun Zhan, Y. Mei
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引用次数: 0

摘要

本文提出了一种使用两个蘑菇状电磁带隙(EBG)结构的紧凑型 WLAN 带缺口可重构宽带天线。该天线基于双宽带微带馈电贴片天线设计,工作频段为 2.2-3.7 GHz 和 4.8-6 GHz。其中一个 EBG 单元位于馈电线旁边,而另一个 EBG 单元则铺设在基板背面。两个 EBG 单元的贴片或接地分别通过一个接地槽和一个寄生存根馈入较强的电流,EBG 结构与天线之间的连接通过加载一个 PIN 二极管和两个 56 pF 直流阻塞电容器来控制。这种设计方案的优点是天线和 EBG 单元可以独立设计。拟议的天线总尺寸为 35×46×1.6 mm3。在测试天线的 S11 时,还考虑了偏置电路对天线的影响。测量结果表明,所提出的天线可以产生 WLAN 的 2.3-2.49 GHz 和 5.11-5.51 GHz 两个陷波带,陷波带的实现增益可分别降低到 -2.65 dBi 和 -4.55 dBi,显示了其抗干扰特性,可应用于带陷波宽带通信系统或无人机、雷达等抗干扰通信设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Reconfigurable Band-notched Wideband Antenna using EBG Structures
A compact WLAN band-notched reconfigurable wideband antenna using two mushroom-like electromagnetic band-gap (EBG) structures is proposed in this paper. It is designed based on a dual wideband microstrip feed patch antenna with operating frequency bands of 2.2-3.7 GHz and 4.8-6 GHz. One of the EBG cells is positioned alongside the feed line, while the other EBG cell is laid on the back of the substrate. The patch or ground of the two EBG units are fed with a stronger current through a ground slot and a parasitic stub respectively, and the connections between the EBG structures and the antenna are controlled by loading a PIN diode with two 56 pF DC blocking capacitors. The advantage of this proposed design is that the antenna and the EBG unit can be designed independently. The proposed antenna has an overall size of 35×46×1.6 mm3. When testing the S11 of the antenna, the influence of the bias circuit on the antenna is also considered. The measured results show that the proposed antenna can generate two notched bands of 2.3-2.49 GHz and 5.11-5.51 GHz of WLAN, and the realized gain in the notch bands can be reduced to -2.65 dBi and -4.55 dBi, respectively, demonstrating its anti-interference characteristics, and can be applied in band notch broadband communication systems or anti-interference communication equipments such as unmanned aerial vehicles and radars.
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