Design of a Compact Passband Frequency Selective Surface with Stable Resonance

We propose a compact planar passband frequency selective surface (FSS) operating at the resonance frequency of 3.81 GHz. The proposed FSS is composed of single layer of the Archimedean spiral type with the interdigital capacitance between the corners of metallic patches printed on one side of the su...

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Main Authors: Samineni Peddakrishna, Taimoor Khan, Binod Kumar Kanaujia, N. Nasimuddin
Format: Article
Language:English
Published: Wiley 2017-01-01
Series:International Journal of Antennas and Propagation
Online Access:http://dx.doi.org/10.1155/2017/7696039
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author Samineni Peddakrishna
Taimoor Khan
Binod Kumar Kanaujia
N. Nasimuddin
author_facet Samineni Peddakrishna
Taimoor Khan
Binod Kumar Kanaujia
N. Nasimuddin
author_sort Samineni Peddakrishna
collection DOAJ
description We propose a compact planar passband frequency selective surface (FSS) operating at the resonance frequency of 3.81 GHz. The proposed FSS is composed of single layer of the Archimedean spiral type with the interdigital capacitance between the corners of metallic patches printed on one side of the substrate. Compared to the operating wavelength, the size of the proposed single layer FSS is 0.066λ0 (λ0 is the free space wavelength at 3.81 GHz). The performance such as transmission and reflection coefficient of the proposed FSS demonstrates excellent resonance stability for different polarization and different incident angles. Finally, the optimized simulated results are validated with measured results by a fabricated prototype of 31×31 array elements on 170×170 mm2 substrate area.
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institution Kabale University
issn 1687-5869
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language English
publishDate 2017-01-01
publisher Wiley
record_format Article
series International Journal of Antennas and Propagation
spelling doaj-art-949e9a3c52994932ac9b4032c08264fd2025-02-03T01:24:29ZengWileyInternational Journal of Antennas and Propagation1687-58691687-58772017-01-01201710.1155/2017/76960397696039Design of a Compact Passband Frequency Selective Surface with Stable ResonanceSamineni Peddakrishna0Taimoor Khan1Binod Kumar Kanaujia2N. Nasimuddin3Department of Electronics and Communication Engineering, National Institute of Technology, Silchar, Assam, IndiaDepartment of Electronics and Communication Engineering, National Institute of Technology, Silchar, Assam, IndiaSchool of Computational and Integrative Sciences, Jawaharlal Nehru University, New Delhi, IndiaInstitute for Infocomm Research, SingaporeWe propose a compact planar passband frequency selective surface (FSS) operating at the resonance frequency of 3.81 GHz. The proposed FSS is composed of single layer of the Archimedean spiral type with the interdigital capacitance between the corners of metallic patches printed on one side of the substrate. Compared to the operating wavelength, the size of the proposed single layer FSS is 0.066λ0 (λ0 is the free space wavelength at 3.81 GHz). The performance such as transmission and reflection coefficient of the proposed FSS demonstrates excellent resonance stability for different polarization and different incident angles. Finally, the optimized simulated results are validated with measured results by a fabricated prototype of 31×31 array elements on 170×170 mm2 substrate area.http://dx.doi.org/10.1155/2017/7696039
spellingShingle Samineni Peddakrishna
Taimoor Khan
Binod Kumar Kanaujia
N. Nasimuddin
Design of a Compact Passband Frequency Selective Surface with Stable Resonance
International Journal of Antennas and Propagation
title Design of a Compact Passband Frequency Selective Surface with Stable Resonance
title_full Design of a Compact Passband Frequency Selective Surface with Stable Resonance
title_fullStr Design of a Compact Passband Frequency Selective Surface with Stable Resonance
title_full_unstemmed Design of a Compact Passband Frequency Selective Surface with Stable Resonance
title_short Design of a Compact Passband Frequency Selective Surface with Stable Resonance
title_sort design of a compact passband frequency selective surface with stable resonance
url http://dx.doi.org/10.1155/2017/7696039
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