A dual band hybrid mimo dielectric resonator antenna for long term evolution applications

Dielectric resonator antennas (DRAs) are widely used in the last two decades. Comparison with microstrip patch antenna, DRA can provide high bandwidth, low metallic losses and high radiation efficiency. Smaller size of meander line is suggested to replace conventional microstrip line. Multiple-input...

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主要作者: Kong, Irene Cheh Lin
格式: Thesis
语言:English
出版: 2018
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spelling my-utm-ep.793232018-10-14T08:42:22Z A dual band hybrid mimo dielectric resonator antenna for long term evolution applications 2018 Kong, Irene Cheh Lin TK Electrical engineering. Electronics Nuclear engineering Dielectric resonator antennas (DRAs) are widely used in the last two decades. Comparison with microstrip patch antenna, DRA can provide high bandwidth, low metallic losses and high radiation efficiency. Smaller size of meander line is suggested to replace conventional microstrip line. Multiple-input multiple-output (MIMO) can increase more channel capacity and throughput compared to single port. In this project, a dual band MIMO hybrid DRA for LTE applications is proposed. This hybrid technique will be consisted of DRA and meander-typed antenna as radiators which can operate at LTE band 8 (880-960 MHz) at ???? = 900 MHz, LTE band 2 (1.85-1.99 GHz), 3 (1.71-1.88 GHz), and 9 (1.7499-1.7849 GHz) at ???? = 1.8 GHz respectively. A triple band is obtained in the simulations of HFSS software with additional 2.3 GHz for LTE Band 30 (2.305-2.360 GHz). The MIMO prototype has bandwidth up to 6.53 % at Port 1 and 12.68 % at Port 2, with isolation ranging - 6.10 dB to - 22.76 dB at 0.9, 1.5, 1.8 and 2.5 GHz. 2018 Thesis http://eprints.utm.my/id/eprint/79323/ http://eprints.utm.my/id/eprint/79323/1/KongIreneChehLinMFKE2018.pdf application/pdf en public masters Universiti Teknologi Malaysia, Faculty of Electrical Engineering Faculty of Electrical Engineering
institution Universiti Teknologi Malaysia
collection UTM Institutional Repository
language English
topic TK Electrical engineering
Electronics Nuclear engineering
spellingShingle TK Electrical engineering
Electronics Nuclear engineering
Kong, Irene Cheh Lin
A dual band hybrid mimo dielectric resonator antenna for long term evolution applications
description Dielectric resonator antennas (DRAs) are widely used in the last two decades. Comparison with microstrip patch antenna, DRA can provide high bandwidth, low metallic losses and high radiation efficiency. Smaller size of meander line is suggested to replace conventional microstrip line. Multiple-input multiple-output (MIMO) can increase more channel capacity and throughput compared to single port. In this project, a dual band MIMO hybrid DRA for LTE applications is proposed. This hybrid technique will be consisted of DRA and meander-typed antenna as radiators which can operate at LTE band 8 (880-960 MHz) at ???? = 900 MHz, LTE band 2 (1.85-1.99 GHz), 3 (1.71-1.88 GHz), and 9 (1.7499-1.7849 GHz) at ???? = 1.8 GHz respectively. A triple band is obtained in the simulations of HFSS software with additional 2.3 GHz for LTE Band 30 (2.305-2.360 GHz). The MIMO prototype has bandwidth up to 6.53 % at Port 1 and 12.68 % at Port 2, with isolation ranging - 6.10 dB to - 22.76 dB at 0.9, 1.5, 1.8 and 2.5 GHz.
format Thesis
qualification_level Master's degree
author Kong, Irene Cheh Lin
author_facet Kong, Irene Cheh Lin
author_sort Kong, Irene Cheh Lin
title A dual band hybrid mimo dielectric resonator antenna for long term evolution applications
title_short A dual band hybrid mimo dielectric resonator antenna for long term evolution applications
title_full A dual band hybrid mimo dielectric resonator antenna for long term evolution applications
title_fullStr A dual band hybrid mimo dielectric resonator antenna for long term evolution applications
title_full_unstemmed A dual band hybrid mimo dielectric resonator antenna for long term evolution applications
title_sort dual band hybrid mimo dielectric resonator antenna for long term evolution applications
granting_institution Universiti Teknologi Malaysia, Faculty of Electrical Engineering
granting_department Faculty of Electrical Engineering
publishDate 2018
url http://eprints.utm.my/id/eprint/79323/1/KongIreneChehLinMFKE2018.pdf
_version_ 1747818200414814208