Resonance Transmission of Dual Plates with Narrow Small Slots due to Two Parallel Wires for Frequencies around 2 GHz

This paper presents the transmission cross-section (TCS) of a dual plate with narrow small slots when a plane wave is incident from the left half-space. Numerical results show that the TCS depends mainly on the plate spacing for a specified frequency. The TCS fluctuates with the plate spacing; the f...

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Published inJournal of Electromagnetic Engineering and Science Vol. 21; no. 4; pp. 253 - 260
Main Authors Kim, Ki-Chai, Park, Gyeong-Sik, Min, Gyeong-Jun, Cho, Young-Ki
Format Journal Article
LanguageEnglish
Published 한국전자파학회JEES 01.09.2021
The Korean Institute of Electromagnetic Engineering and Science
한국전자파학회
Subjects
Online AccessGet full text
ISSN2671-7255
2671-7263
DOI10.26866/jees.2021.4.r.32

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Abstract This paper presents the transmission cross-section (TCS) of a dual plate with narrow small slots when a plane wave is incident from the left half-space. Numerical results show that the TCS depends mainly on the plate spacing for a specified frequency. The TCS fluctuates with the plate spacing; the fluctuation period is approximately 0.5λ. When the plate spacing is larger than 0.5λ, the TCS reduces to 90% in the single plate case, and TCS enhancement is extremely difficult. However, when the plate spacing is less than 0.5λ, the TCS decreases gradually to approximately 36% in the single plate case, and TCS enhancement can be realized using two parallel wires. The analysis results show that resonance transmission is effectively obtained by the wires connected on the slots for a plate spacing within 0.5λ. Experimental measurements are presented to validate the theory.
AbstractList This paper presents the transmission cross-section (TCS) of a dual plate with narrow small slots when a plane wave is incident from the left half-space. Numerical results show that the TCS depends mainly on the plate spacing for a specified frequency. The TCS fluctuates with the plate spacing; the fluctuation period is approximately 0.5λ. When the plate spacing is larger than 0.5λ, the TCS reduces to 90% in the single plate case, and TCS enhancement is extremely difficult. However, when the plate spacing is less than 0.5λ, the TCS decreases gradually to approximately 36% in the single plate case, and TCS enhancement can be realized using two parallel wires. The analysis results show that resonance transmission is effectively obtained by the wires connected on the slots for a plate spacing within 0.5λ. Experimental measurements are presented to validate the theory.
This paper presents the transmission cross-section (TCS) of a dual plate with narrow small slots when a plane wave is incident from the left half-space. Numerical results show that the TCS depends mainly on the plate spacing for a specified frequency. The TCS fluctuates with the plate spacing; the fluctuation period is approximately 0.5λ. When the plate spacing is larger than 0.5λ, the TCS reduces to 90% in the single plate case, and TCS enhancement is extremely difficult. However, when the plate spacing is less than 0.5λ, the TCS decreases gradually to approximately 36% in the single plate case, and TCS enhancement can be realized using two parallel wires. The analysis results show that resonance transmission is effectively obtained by the wires connected on the slots for a plate spacing within 0.5λ. Experimental measurements are presented to validate the theory. KCI Citation Count: 2
Author Ki-Chai Kim
Gyeong-Sik Park
Gyeong-Jun Min
Young-Ki Cho
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crossref_primary_10_1109_ACCESS_2022_3168160
Cites_doi 10.1109/tap.1982.1142926
10.1109/temc.1978.303696
10.1364/ol.28.001320
10.1109/tap.1982.1142761
10.1587/elex.15.20180015
10.1364/ao.31.003036
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SubjectTerms dual plate
resonance transmission
small and narrow slot
transmission cross-section
전자/정보통신공학
Title Resonance Transmission of Dual Plates with Narrow Small Slots due to Two Parallel Wires for Frequencies around 2 GHz
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