Investigations on feeding techniques of dielectric resonator antenna at 26 GHz

In this paper, Microstrip slot aperture and Microstrip line feeding techniques of dielectric resonator antenna are investigated and examined at 26 GHz for 5G applications. The dielectric resonator has a dielectric constant of 10 and etched on Rogers RT/Duroid 5880 substrate having a thickness of 0.2...

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Main Authors: Ali, Irfan, Jamaluddin, Mohd. Haizal, Gaya, Abinash
Format: Article
Language:English
Published: Institute of Advanced Engineering and Science 2020
Subjects:
Online Access:http://eprints.utm.my/91106/1/MohdHaizalJamaluddin2020_InvestigationsonFeedingTechniquesofDielectricResonator.pdf
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author Ali, Irfan
Jamaluddin, Mohd. Haizal
Gaya, Abinash
author_facet Ali, Irfan
Jamaluddin, Mohd. Haizal
Gaya, Abinash
author_sort Ali, Irfan
collection ePrints
description In this paper, Microstrip slot aperture and Microstrip line feeding techniques of dielectric resonator antenna are investigated and examined at 26 GHz for 5G applications. The dielectric resonator has a dielectric constant of 10 and etched on Rogers RT/Duroid 5880 substrate having a thickness of 0.254mm and relative permittivity of 2.2. The proposed structures are optimized and simulated using the commercial software CST Microwave studio. The effect of feeding techniques on the bandwidth, radiation efficiency, gain, VSWR and radiation pattern are also examined and analysed. The return loss, bandwidth, gain, radiation efficiency, VSWR and radiation pattern are presented and compared based on the excitation method employed for the studied DRA. The simulated results show that the microstrip slot aperture provides good performance and is suitable for 5G applications.
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spelling utm.eprints-911062021-05-31T13:29:27Z http://eprints.utm.my/91106/ Investigations on feeding techniques of dielectric resonator antenna at 26 GHz Ali, Irfan Jamaluddin, Mohd. Haizal Gaya, Abinash TK Electrical engineering. Electronics Nuclear engineering In this paper, Microstrip slot aperture and Microstrip line feeding techniques of dielectric resonator antenna are investigated and examined at 26 GHz for 5G applications. The dielectric resonator has a dielectric constant of 10 and etched on Rogers RT/Duroid 5880 substrate having a thickness of 0.254mm and relative permittivity of 2.2. The proposed structures are optimized and simulated using the commercial software CST Microwave studio. The effect of feeding techniques on the bandwidth, radiation efficiency, gain, VSWR and radiation pattern are also examined and analysed. The return loss, bandwidth, gain, radiation efficiency, VSWR and radiation pattern are presented and compared based on the excitation method employed for the studied DRA. The simulated results show that the microstrip slot aperture provides good performance and is suitable for 5G applications. Institute of Advanced Engineering and Science 2020-08 Article PeerReviewed application/pdf en http://eprints.utm.my/91106/1/MohdHaizalJamaluddin2020_InvestigationsonFeedingTechniquesofDielectricResonator.pdf Ali, Irfan and Jamaluddin, Mohd. Haizal and Gaya, Abinash (2020) Investigations on feeding techniques of dielectric resonator antenna at 26 GHz. Indonesian Journal of Electrical Engineering and Computer, 19 (2). pp. 864-869. ISSN 2502-4752 http://dx.doi.org/10.11591/ijeecs.v19.i2.pp864-869
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Ali, Irfan
Jamaluddin, Mohd. Haizal
Gaya, Abinash
Investigations on feeding techniques of dielectric resonator antenna at 26 GHz
title Investigations on feeding techniques of dielectric resonator antenna at 26 GHz
title_full Investigations on feeding techniques of dielectric resonator antenna at 26 GHz
title_fullStr Investigations on feeding techniques of dielectric resonator antenna at 26 GHz
title_full_unstemmed Investigations on feeding techniques of dielectric resonator antenna at 26 GHz
title_short Investigations on feeding techniques of dielectric resonator antenna at 26 GHz
title_sort investigations on feeding techniques of dielectric resonator antenna at 26 ghz
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/91106/1/MohdHaizalJamaluddin2020_InvestigationsonFeedingTechniquesofDielectricResonator.pdf
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