3D absorptive frequency-selective reflection and transmission structures with dual absorption bands
This paper presents a 3D absorptive frequency-selective reflection structure (AFSR) and absorptive frequency-selective transmission structure (AFST) with one reflection/transmission band and two absorption bands. The 3D AFSR utilizes the intrinsic reflection band and higher order absorption band of...
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sg-ntu-dr.10356-1033942020-03-07T14:00:36Z 3D absorptive frequency-selective reflection and transmission structures with dual absorption bands Yu, Yufeng Luo, Guo Qing Ahmed Abdelmottaleb Omar Liu, Xuan Yu, Weiliang Hao, Zhang Cheng Shen, Zhongxiang School of Electrical and Electronic Engineering Absorptive Frequency-selective Reflector Absorptive Frequency-selective Transmission Structure This paper presents a 3D absorptive frequency-selective reflection structure (AFSR) and absorptive frequency-selective transmission structure (AFST) with one reflection/transmission band and two absorption bands. The 3D AFSR utilizes the intrinsic reflection band and higher order absorption band of a wideband 3D absorber. By simply loading a printed gap capacitor in the structure, the reflection band can be easily tuned by varying the capacitance of the capacitor. A design example is presented, with a reflection band of 24.7% fractional bandwidth (FBW), a lower absorption band of 72.5% FBW, and a higher absorption band of 48.6% FBW. A 3D AFST composed of the 3D AFSR and a parallel-plate waveguide is then proposed. Its general operating principle is demonstrated, such that the 3D AFST can be seen as a combination of a 3D AFSR and a 3D band-pass FSS, which can independently contribute to the absorption and transmission, respectively. A set of guidelines is proposed to facilitate the design. A prototype of the proposed AFST is fabricated and measured. The measured results show that the transmission band is with a minimum insertion loss of 0.4 dB and an FBW of 30%. Moreover, the lower and higher absorption bands are with 63.9 % and 47.6 % FBW, respectively. The proposed AFST has a simpler structure, wider lower absorption bandwidth, and thinner thickness compared with previous structures. Published version 2019-01-02T01:23:35Z 2019-12-06T21:11:42Z 2019-01-02T01:23:35Z 2019-12-06T21:11:42Z 2018 Journal Article Yu, Y., Luo, G. Q., Ahmed Abdelmottaleb Omar, Liu, X., Yu, W., Hao, Z. C., & Shen, Z. (2018). 3D absorptive frequency-selective reflection and transmission structures with dual absorption bands. IEEE Access, 6, 72880-72888. doi:10.1109/ACCESS.2018.2881744 https://hdl.handle.net/10356/103394 http://hdl.handle.net/10220/47287 10.1109/ACCESS.2018.2881744 en IEEE Access © 2018 IEEE. Translations and content mining are permitted for academic research only. Personal use is also permitted, but republication/redistribution requires IEEE permission. See http://www.ieee.org/publications_standards/publications/rights/index.html for more information. 9 p. application/pdf |
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Absorptive Frequency-selective Reflector Absorptive Frequency-selective Transmission Structure |
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Absorptive Frequency-selective Reflector Absorptive Frequency-selective Transmission Structure Yu, Yufeng Luo, Guo Qing Ahmed Abdelmottaleb Omar Liu, Xuan Yu, Weiliang Hao, Zhang Cheng Shen, Zhongxiang 3D absorptive frequency-selective reflection and transmission structures with dual absorption bands |
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This paper presents a 3D absorptive frequency-selective reflection structure (AFSR) and absorptive frequency-selective transmission structure (AFST) with one reflection/transmission band and two absorption bands. The 3D AFSR utilizes the intrinsic reflection band and higher order absorption band of a wideband 3D absorber. By simply loading a printed gap capacitor in the structure, the reflection band can be easily tuned by varying the capacitance of the capacitor. A design example is presented, with a reflection band of 24.7% fractional bandwidth (FBW), a lower absorption band of 72.5% FBW, and a higher absorption band of 48.6% FBW. A 3D AFST composed of the 3D AFSR and a parallel-plate waveguide is then proposed. Its general operating principle is demonstrated, such that the 3D AFST can be seen as a combination of a 3D AFSR and a 3D band-pass FSS, which can independently contribute to the absorption and transmission, respectively. A set of guidelines is proposed to facilitate the design. A prototype of the proposed AFST is fabricated and measured. The measured results show that the transmission band is with a minimum insertion loss of 0.4 dB and an FBW of 30%. Moreover, the lower and higher absorption bands are with 63.9 % and 47.6 % FBW, respectively. The proposed AFST has a simpler structure, wider lower absorption bandwidth, and thinner thickness compared with previous structures. |
author2 |
School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Yu, Yufeng Luo, Guo Qing Ahmed Abdelmottaleb Omar Liu, Xuan Yu, Weiliang Hao, Zhang Cheng Shen, Zhongxiang |
format |
Article |
author |
Yu, Yufeng Luo, Guo Qing Ahmed Abdelmottaleb Omar Liu, Xuan Yu, Weiliang Hao, Zhang Cheng Shen, Zhongxiang |
author_sort |
Yu, Yufeng |
title |
3D absorptive frequency-selective reflection and transmission structures with dual absorption bands |
title_short |
3D absorptive frequency-selective reflection and transmission structures with dual absorption bands |
title_full |
3D absorptive frequency-selective reflection and transmission structures with dual absorption bands |
title_fullStr |
3D absorptive frequency-selective reflection and transmission structures with dual absorption bands |
title_full_unstemmed |
3D absorptive frequency-selective reflection and transmission structures with dual absorption bands |
title_sort |
3d absorptive frequency-selective reflection and transmission structures with dual absorption bands |
publishDate |
2019 |
url |
https://hdl.handle.net/10356/103394 http://hdl.handle.net/10220/47287 |
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1681049422167801856 |