Performance analysis of a tunable absorber based on active frequency selective surface
Objectives A periodic absorber can absorb incident electromagnetic waves and effectively reduce the reflectivity of a target. To this end, a novel microwave absorber based on an active frequency selective surface (AFSS) is proposed in this paper. The absorption frequency bandwidth can be dynamically...
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doaj-3e29251f4ec94e4184f186736e027eea2020-11-25T03:29:29ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852020-04-01152364110.19693/j.issn.1673-3185.01713Performance analysis of a tunable absorber based on active frequency selective surfaceZENG Xianliang0ZHANG Linxi1WAN Guobin2School of Electronics and Information, Northwestern Polytechnical University, Xi'an 710072, ChinaSchool of Electronics and Information, Northwestern Polytechnical University, Xi'an 710072, ChinaSchool of Electronics and Information, Northwestern Polytechnical University, Xi'an 710072, ChinaObjectives A periodic absorber can absorb incident electromagnetic waves and effectively reduce the reflectivity of a target. To this end, a novel microwave absorber based on an active frequency selective surface (AFSS) is proposed in this paper. The absorption frequency bandwidth can be dynamically adjusted by adding one PIN diode to the unit cell.Methods First, the tunable reflection performance of the proposed absorber is studied by means of a full-wave electromagnetic simulator CST in order to investigate the reflectivity of the absorber diode as the equivalent resistance of the PIN diode changes with different forward current. The propagation and reflection properties of electromagnetic waves in a multi-layer structure is then analyzed using multi-reflection interference theory so as to quantitatively illustrate the magnitude and phase condition with regard to the near unity absorption. Finally, an experiment is conducted on a fabricated absorber to verify its effectiveness in an anechoic chamber.Results The results indicate that the reflectivity of the absorber can be effectively controlled within the range of 2.5–9.1 GHz after adding the PIN diode.Conclusions The results of this paper have the potential to be applied in the electromagnetic stealth technology of weapons and equipment.http://html.rhhz.net/ZGJCYJ/html/2020-2-36.htmstealth technologyactive frequency selective surface (afss)pin dioderadar absorbing materialsreflectivityinterference theory |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
ZENG Xianliang ZHANG Linxi WAN Guobin |
spellingShingle |
ZENG Xianliang ZHANG Linxi WAN Guobin Performance analysis of a tunable absorber based on active frequency selective surface Zhongguo Jianchuan Yanjiu stealth technology active frequency selective surface (afss) pin diode radar absorbing materials reflectivity interference theory |
author_facet |
ZENG Xianliang ZHANG Linxi WAN Guobin |
author_sort |
ZENG Xianliang |
title |
Performance analysis of a tunable absorber based on active frequency selective surface |
title_short |
Performance analysis of a tunable absorber based on active frequency selective surface |
title_full |
Performance analysis of a tunable absorber based on active frequency selective surface |
title_fullStr |
Performance analysis of a tunable absorber based on active frequency selective surface |
title_full_unstemmed |
Performance analysis of a tunable absorber based on active frequency selective surface |
title_sort |
performance analysis of a tunable absorber based on active frequency selective surface |
publisher |
Editorial Office of Chinese Journal of Ship Research |
series |
Zhongguo Jianchuan Yanjiu |
issn |
1673-3185 1673-3185 |
publishDate |
2020-04-01 |
description |
Objectives A periodic absorber can absorb incident electromagnetic waves and effectively reduce the reflectivity of a target. To this end, a novel microwave absorber based on an active frequency selective surface (AFSS) is proposed in this paper. The absorption frequency bandwidth can be dynamically adjusted by adding one PIN diode to the unit cell.Methods First, the tunable reflection performance of the proposed absorber is studied by means of a full-wave electromagnetic simulator CST in order to investigate the reflectivity of the absorber diode as the equivalent resistance of the PIN diode changes with different forward current. The propagation and reflection properties of electromagnetic waves in a multi-layer structure is then analyzed using multi-reflection interference theory so as to quantitatively illustrate the magnitude and phase condition with regard to the near unity absorption. Finally, an experiment is conducted on a fabricated absorber to verify its effectiveness in an anechoic chamber.Results The results indicate that the reflectivity of the absorber can be effectively controlled within the range of 2.5–9.1 GHz after adding the PIN diode.Conclusions The results of this paper have the potential to be applied in the electromagnetic stealth technology of weapons and equipment. |
topic |
stealth technology active frequency selective surface (afss) pin diode radar absorbing materials reflectivity interference theory |
url |
http://html.rhhz.net/ZGJCYJ/html/2020-2-36.htm |
work_keys_str_mv |
AT zengxianliang performanceanalysisofatunableabsorberbasedonactivefrequencyselectivesurface AT zhanglinxi performanceanalysisofatunableabsorberbasedonactivefrequencyselectivesurface AT wanguobin performanceanalysisofatunableabsorberbasedonactivefrequencyselectivesurface |
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1724578865731338240 |