首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Dynamically Reconfigurable High Impedance and Frequency Selective Metasurfaces Using Piezoelectric Actuators
【24h】

Dynamically Reconfigurable High Impedance and Frequency Selective Metasurfaces Using Piezoelectric Actuators

机译:使用压电致动器可动态重构的高阻抗和频率选择性超颖表面

获取原文
获取原文并翻译 | 示例

摘要

Novel dynamically reconfigurable low-loss high impedance and frequency selective metasurfaces (FSmSs) are presented, operating at around 15 GHz and incorporating compact piezoelectric actuators. The high impedance metasurface (HIS) consists of an array of metallic elements printed on a thin dielectric substrate, placed over a ground plane, and supported by the actuators. Under a dc bias, the actuators produce a displacement between the two layers, resulting in a change in the reflection phase response. Furthermore, novel multilayer FSmSs are proposed achieving significant tuning of their passband response with low losses. The FSmSs consist of three closely spaced periodic arrays of subwavelength nonresonant elements, namely, an array of metallic square loops placed between two arrays of square apertures in metallic sheets, separated by air cavities. The combination of the square loop array and one of the square aperture arrays produces a high impedance surface response, which is tuned using the piezoelectric actuators. This in turn alters the resonance condition of the complete FSmS structure and thus the central frequency of the passband. The structures have been investigated through simulations and measurements with good agreement, achieving an experimental frequency tuning range of 17% for the HIS and of 8.8% for the FSmS as well as a maximum phase shift of over 177° for the HIS at approximately 14 GHz.
机译:提出了新颖的动态可重构低损耗高阻抗和频率选择性超颖表面(FSmSs),其工作频率约为15 GHz,并集成了紧凑的压电致动器。高阻抗超表面(HIS)由印刷在薄介电基板上,放置在接地平面上并由执行器支撑的金属元素阵列组成。在直流偏置下,执行器在两层之间产生位移,从而导致反射相位响应发生变化。此外,提出了新颖的多层FSmS,以低损耗实现了其通带响应的显着调谐。 FSmS由亚波长非谐振元件的三个紧密间隔的周期性阵列组成,即,放置在金属板中的两个正方形孔阵列之间的金属正方形环阵列,并由气腔隔开。方环阵列和方孔阵列之一的组合产生了高阻抗表面响应,可使用压电致动器对其进行调谐。这进而改变了整个FSmS结构的谐振条件,从而改变了通带的中心频率。通过仿真和测量对结构进行了很好的一致性研究,HIS的实验频率调谐范围为17%,FSmS的实验频率调谐范围为8.8%,HIS在约14 GHz时的最大相移超过177° 。

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