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Comparative study of patch antenna loaded with slot split-ring resonators on different substrate materials
This paper presents square patch antenna loaded with slot split-ring resonators. Moreover, this paper discusses the performances of various dielectric substrates, having dielectric constants ranging from 2 to 5. Different substrate has been used to design the antenna such as Bakelite, Rogers RO 4232...
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Published in: | Photonic network communications 2018-04, Vol.35 (2), p.195-203 |
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container_title | Photonic network communications |
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creator | Bendaoudi, A. Mahdjoub, Z. |
description | This paper presents square patch antenna loaded with slot split-ring resonators. Moreover, this paper discusses the performances of various dielectric substrates, having dielectric constants ranging from 2 to 5. Different substrate has been used to design the antenna such as Bakelite, Rogers RO 4232 and RT Duroid with dielectric constant of 4.8, 3.2 and 2.2, respectively. The resonance frequency is 2.25 GHz; these antennas are suitable for S-band and communication applications. The effect of change in substrate material on the performance of antenna is compared, in terms of reflection coefficient, bandwidth, directivity and radiation pattern. |
doi_str_mv | 10.1007/s11107-017-0727-7 |
format | article |
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Moreover, this paper discusses the performances of various dielectric substrates, having dielectric constants ranging from 2 to 5. Different substrate has been used to design the antenna such as Bakelite, Rogers RO 4232 and RT Duroid with dielectric constant of 4.8, 3.2 and 2.2, respectively. The resonance frequency is 2.25 GHz; these antennas are suitable for S-band and communication applications. 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subjects | Bakelite Characterization and Evaluation of Materials Computer Communication Networks Computer Science Dielectrics Electrical Engineering Original Paper Patch antennas Permittivity Reflectance Resonators Substrates Superhigh frequencies Vinyl resins |
title | Comparative study of patch antenna loaded with slot split-ring resonators on different substrate materials |
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