Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure
This paper introduces an angular-insensitive dual-polarized 3-D absorptive frequency-selective transmission structure (AFST), which has a transmission window and an upper absorption band. The transmission band is produced by lossless resonators implemented using an aperture antenna embedded notched...
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sg-ntu-dr.10356-1456902021-01-05T02:52:49Z Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure Zhang, Binchao Jin, Cheng Chen, Ke Shen, Zhongxiang School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Absorptive Frequency-selective Transmission Structure 3-D Frequency Selective Structure This paper introduces an angular-insensitive dual-polarized 3-D absorptive frequency-selective transmission structure (AFST), which has a transmission window and an upper absorption band. The transmission band is produced by lossless resonators implemented using an aperture antenna embedded notched parallel plate waveguide with a metalized via hole in the center. The absorption band is obtained by lossy resonators constructed by the single resistor embedded bent metallic strips. In addition, the whole structure is constructed without backing discontinuous metallic ground plane, which overcomes the fabrication difficulty of conventional 3-D structures. Physical mechanism of the proposed AFST is explained with the aid of an equivalent circuit model, as well as current and electric field distributions. A prototype of the designed AFST is fabricated and measured, and experimental results show that a fractional transmission bandwidth of 20.5% and an upper absorption bandwidth of 28.8% with absorptivity around 90% for both TE- and TM-polarizations are achieved under oblique incident wave up to 50°. Published version 2021-01-05T02:52:49Z 2021-01-05T02:52:49Z 2020 Journal Article Zhang, B., Jin, C., Chen, K., & Shen, Z. (2020). Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure. IEEE Access, 8, 94833-94841. doi:10.1109/ACCESS.2020.2995169 2169-3536 https://hdl.handle.net/10356/145690 10.1109/ACCESS.2020.2995169 8 94833 94841 en IEEE Access © 2020 IEEE. This journal is 100% open access, which means that all content is freely available without charge to users or their institutions. All articles accepted after 12 June 2019 are published under a CC BY 4.0 license, and the author retains copyright. Users are allowed to read, download, copy, distribute, print, search, or link to the full texts of the articles, or use them for any other lawful purpose, as long as proper attribution is given. application/pdf |
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Engineering::Electrical and electronic engineering Absorptive Frequency-selective Transmission Structure 3-D Frequency Selective Structure Zhang, Binchao Jin, Cheng Chen, Ke Shen, Zhongxiang Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure |
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This paper introduces an angular-insensitive dual-polarized 3-D absorptive frequency-selective transmission structure (AFST), which has a transmission window and an upper absorption band. The transmission band is produced by lossless resonators implemented using an aperture antenna embedded notched parallel plate waveguide with a metalized via hole in the center. The absorption band is obtained by lossy resonators constructed by the single resistor embedded bent metallic strips. In addition, the whole structure is constructed without backing discontinuous metallic ground plane, which overcomes the fabrication difficulty of conventional 3-D structures. Physical mechanism of the proposed AFST is explained with the aid of an equivalent circuit model, as well as current and electric field distributions. A prototype of the designed AFST is fabricated and measured, and experimental results show that a fractional transmission bandwidth of 20.5% and an upper absorption bandwidth of 28.8% with absorptivity around 90% for both TE- and TM-polarizations are achieved under oblique incident wave up to 50°. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Zhang, Binchao Jin, Cheng Chen, Ke Shen, Zhongxiang |
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Article |
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Zhang, Binchao Jin, Cheng Chen, Ke Shen, Zhongxiang |
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Zhang, Binchao |
title |
Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure |
title_short |
Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure |
title_full |
Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure |
title_fullStr |
Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure |
title_full_unstemmed |
Aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-D absorptive frequency-selective transmission structure |
title_sort |
aperture antenna embedded notched parallel plate waveguide and its application to dual-polarized 3-d absorptive frequency-selective transmission structure |
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2021 |
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https://hdl.handle.net/10356/145690 |
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1688665453322305536 |