...
首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Metasurface-based triple-band high-gain Fabry–Perot cavity antenna
【24h】

Metasurface-based triple-band high-gain Fabry–Perot cavity antenna

机译:基于元表面的三频高增益法布里 - 珀罗腔天线

获取原文
获取原文并翻译 | 示例
           

摘要

A compact, high gain, single layer substrate-superstrate configuration based Fabry–Perot cavity (FPC) microstrip patch antenna (MPA) is designed. It consists of a single-frequency MPA on a substrate, along with a frequencyselective surface (FSS) which acts as a metasurface-superstrate. The FSS contains a periodic arrangement of unit cells in a square lattice, where each unit cell is structured by a simple design of H-shape. It works as a partially reflecting surface and is used as a superstrate by mounting the FSS layer over the conventional patch antenna using a Teflon spacer. Our design of single layer and single resonance FSS structure is used to obtain triple-band resonance on loading it as a superstrate on the MPA. The enhanced reflection phase of FSS plays a key role in obtaining triple-band performance. The relationship between the cavity height and the cavity resonance frequency is the foremost reason to achieve triple-band FPC-MPA from a single resonance MPA. The prototype antenna is fabricated, and the measured results show that the FPC antenna yields a peak gain of nearly 9.30, 10.00, and 9.60 dB at 8.90, 9.63, and 11.49 GHz, respectively in broad-side direction in both the planes. Gain enhancement of nearly 6, 4.50, and 5.50 dB, in all the three bands are achieved in both the planes, emphasizing the effect of stacking the superstrate on the conventional patch antenna. The triple-band frequency response shows 3 dB gain bandwidths of 11.79%, 11.45%, and 9.56% at the three frequencies. A significant improvement in impedance bandwidth has been achieved in the measurements in all the three frequency bands, with the highest bandwidth improvement of 6.71% of the FPC antenna at 11.49 GHz. It is also reconfigurable as its operating frequency can be tuned within the X-band (8–12 GHz) range by a small change in the spacer thickness. In addition, it shows rotation angle-independent performance features.
机译:设计了紧凑,高增益,单层基板 - 超级衬底上的Fabry-Perot腔(FPC)微带斑点贴片天线(MPA)。它由基板上的单频MPA组成,以及用作质量表面叠层的频敏感表面(FSS)。 FSS包含方形格子中的单元电池的周期性排列,其中每个单元电池通过简单的H形设计构成。它用作部分反射表面,并且通过使用Teflon垫片将FSS层安装在传统的贴片天线上通过将FSS层安装为叠层。我们的单层和单个谐振FSS结构的设计用于获得在将其加载其作为MPa上的超级频率的三频段共振。 FSS的增强型反射阶段在获得三频段性能方面发挥着关键作用。腔高度与腔谐振频率之间的关系是实现来自单个谐振MPa的三频段FPC-MPA的原因。原型天线是制造的,并且测量结果表明,FPC天线分别在8.90,9.63和11.49GHz中分别在两个平面中的宽方向上为8.90,90.00和9.60dB的峰值增益。在两个平面中实现了近6,50和5.50dB的增强,在所有三个条带中都实现了堆叠在传统贴片天线上的堆叠堆叠的效果。三频段频率响应显示3 dB的增益带宽11.79%,11.45%和9.56%的三个频率。在所有三个频带中的测量中已经实现了阻抗带宽的显着改善,具有11.49GHz的FPC天线的最高带宽提高了6.71%。它还可以重新配置,因为它的工作频率可以通过间隔厚度的小变化在X波段(8-12GHz)范围内进行调谐。此外,它显示了旋转角度无关的性能特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号