Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application
Design of a microstrip patch UHF reader parasitic array antenna for RFID (Radio Frequency Identification) applications is proposed, in which the design patches antenna realized by loading two truncated at the corner of the ordinary rectangular patch antenna. The patch was sorted in a 2 x 2 array con...
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my.uniten.dspace-240272023-05-29T14:54:30Z Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application Norzeli S.M. Ismail I. Din N.M. Ali M.T. Saravani S. Almisreb A.A. 50061722000 35109316200 9335429400 55262755700 57191968258 50460937600 Design of a microstrip patch UHF reader parasitic array antenna for RFID (Radio Frequency Identification) applications is proposed, in which the design patches antenna realized by loading two truncated at the corner of the ordinary rectangular patch antenna. The patch was sorted in a 2 x 2 array configuration, meanwhile the feed network was constructed by coaxial feed concept. The parasitic elements are added on the same layer of the substrate and at the right and left side of the every patch. The physical parameters of the novel structure are simulated and optimized by using commercial computer simulation technology (CST) simulation packages. The simulation results show the high gain antenna is achieved which is 11.15 dBi. The measured results of the return losses and the radiation pattern achieved a good agreement with the simulated results. � 2018 Authors. Final 2023-05-29T06:54:30Z 2023-05-29T06:54:30Z 2018 Article 10.14419/ijet.v7i4.35.22862 2-s2.0-85059240078 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059240078&doi=10.14419%2fijet.v7i4.35.22862&partnerID=40&md5=b3d2bdb7c1bc3386f1b5074fab70db47 https://irepository.uniten.edu.my/handle/123456789/24027 7 4 463 467 Science Publishing Corporation Inc Scopus |
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Design of a microstrip patch UHF reader parasitic array antenna for RFID (Radio Frequency Identification) applications is proposed, in which the design patches antenna realized by loading two truncated at the corner of the ordinary rectangular patch antenna. The patch was sorted in a 2 x 2 array configuration, meanwhile the feed network was constructed by coaxial feed concept. The parasitic elements are added on the same layer of the substrate and at the right and left side of the every patch. The physical parameters of the novel structure are simulated and optimized by using commercial computer simulation technology (CST) simulation packages. The simulation results show the high gain antenna is achieved which is 11.15 dBi. The measured results of the return losses and the radiation pattern achieved a good agreement with the simulated results. � 2018 Authors. |
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50061722000 |
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50061722000 Norzeli S.M. Ismail I. Din N.M. Ali M.T. Saravani S. Almisreb A.A. |
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Article |
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Norzeli S.M. Ismail I. Din N.M. Ali M.T. Saravani S. Almisreb A.A. |
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Norzeli S.M. Ismail I. Din N.M. Ali M.T. Saravani S. Almisreb A.A. Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application |
author_sort |
Norzeli S.M. |
title |
Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application |
title_short |
Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application |
title_full |
Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application |
title_fullStr |
Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application |
title_full_unstemmed |
Design of high gain microstrip Patch Reader array antenna with parasitic elements for UHF RFID application |
title_sort |
design of high gain microstrip patch reader array antenna with parasitic elements for uhf rfid application |
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Science Publishing Corporation Inc |
publishDate |
2023 |
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1806424287424282624 |