Affiliation of Author(s):电子信息工程学院
Journal:INTERNATIONAL JOURNAL OF RF AND MICROWAVE COMPUTER-AIDED ENGINEERING
Key Words:active frequency selective surface equivalent circuit model switching tuning
Abstract:A dual-functional active frequency selective surface (AFSS), which integrates two independent and dividable functions, is presented in this article. The proposed structure consists of two orthogonally arranged metallic layers, separated by a thin dielectric layer. Different active devices, including varactor diodes and PIN diodes, are loaded on top and bottom metallic layers, separately. Thus, the frequency tuning function for transverse magnetic waves and the electromagnetic switching function for transverse electric waves can be attained, respectively, by controlling the working states of these active components. In addition, a novel feeding configuration is designed to mitigate the negative impact of the bias network and provide parallel feeding topology simultaneously. Detailed equivalent circuit models for different polarizations and states are constructed to characterize the AFSS structure. Finally, a prototype of the proposed structure is fabricated and measured for verification, and the experimental observations agree well with the simulated results. This dual-functional AFSS could be an important step toward multifunctional AFSSs that are endowed with more than two electromagnetic functions.
ISSN No.:1096-4290
Translation or Not:no
Date of Publication:2018-09-01
Co-author:Li, Huangyan,Costa, Filippo,Fang, Junjie,cqs,Monorchio, Agostino
Correspondence Author:cqs,WANG Yi
Associate Professor
Supervisor of Master's Candidates
Gender:Male
Alma Mater:Nanjing University of Aeronautics and Astronautics
Education Level:With Certificate of Graduation for Doctorate Study
Degree:Doctoral Degree in Engineering
School/Department:College of Electronic and Information Engineering
Discipline:Electromagnetic Fields and Microwave Technology
Business Address:CEIE, NUAA, Nanjing, China
Contact Information:jflsjfls@nuaa.edu.cn
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