Triple band MIMO dielectric resonator antenna for LTE applications
A triple band dual-polarized MIMO square dielectric resonator antenna (DRA) for fourth generation (4G) and fifth generation (5G) is proposed and analyzed in this paper. It covers LTE band 9/24 (1.63–1.84) GHz at lower frequency, LTE band 38/41 (2.43–2.71) GHz at middle frequency and LTE band 48/52 (...
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my.utm.871722020-10-31T12:26:35Z http://eprints.utm.my/id/eprint/87172/ Triple band MIMO dielectric resonator antenna for LTE applications Anuar, Siti Umairah Jamaluddin, Mohd. Haizal Din, Jafri Kamardin, Kamalia Dahri, Muhammad Hashim Idris, Izni Husna TK Electrical engineering. Electronics Nuclear engineering A triple band dual-polarized MIMO square dielectric resonator antenna (DRA) for fourth generation (4G) and fifth generation (5G) is proposed and analyzed in this paper. It covers LTE band 9/24 (1.63–1.84) GHz at lower frequency, LTE band 38/41 (2.43–2.71) GHz at middle frequency and LTE band 48/52 (3.27–3.75) GHz at higher frequency. The aperture coupling feeding mechanism techniques such as position of slot/feeding and L-monopole feeding have been explored to obtain triple band operation by exciting TE1δ1 (1.8 GHz), TE2δ1 (2.6 GHz) and TE44δ (3.6 GHz) radiating modes inside the DRA respectively. The proposed MIMO antenna provide impedance bandwidth of 12% at 1.7 GHz, 10.89% at 2.6 GHz and 13.68% at 3.6 GHz. Measured antenna gain obtained at 1.7 GHz is 5.5 dBi, at 2.6 GHz is 5.9 dBi and at 3.6 GHz is 6.9 dBi. Obtained envelope correlation coefficient (ECC) is less than 0.02, and the diversity gain is about 10 dB at the desired frequency band. Elsevier GmbH 2020 Article PeerReviewed Anuar, Siti Umairah and Jamaluddin, Mohd. Haizal and Din, Jafri and Kamardin, Kamalia and Dahri, Muhammad Hashim and Idris, Izni Husna (2020) Triple band MIMO dielectric resonator antenna for LTE applications. AEU - International Journal of Electronics and Communications, 118 . p. 153172. ISSN 1434-8411 http://dx.doi.org/10.1016/j.aeue.2020.153172 |
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TK Electrical engineering. Electronics Nuclear engineering Anuar, Siti Umairah Jamaluddin, Mohd. Haizal Din, Jafri Kamardin, Kamalia Dahri, Muhammad Hashim Idris, Izni Husna Triple band MIMO dielectric resonator antenna for LTE applications |
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A triple band dual-polarized MIMO square dielectric resonator antenna (DRA) for fourth generation (4G) and fifth generation (5G) is proposed and analyzed in this paper. It covers LTE band 9/24 (1.63–1.84) GHz at lower frequency, LTE band 38/41 (2.43–2.71) GHz at middle frequency and LTE band 48/52 (3.27–3.75) GHz at higher frequency. The aperture coupling feeding mechanism techniques such as position of slot/feeding and L-monopole feeding have been explored to obtain triple band operation by exciting TE1δ1 (1.8 GHz), TE2δ1 (2.6 GHz) and TE44δ (3.6 GHz) radiating modes inside the DRA respectively. The proposed MIMO antenna provide impedance bandwidth of 12% at 1.7 GHz, 10.89% at 2.6 GHz and 13.68% at 3.6 GHz. Measured antenna gain obtained at 1.7 GHz is 5.5 dBi, at 2.6 GHz is 5.9 dBi and at 3.6 GHz is 6.9 dBi. Obtained envelope correlation coefficient (ECC) is less than 0.02, and the diversity gain is about 10 dB at the desired frequency band. |
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Article |
author |
Anuar, Siti Umairah Jamaluddin, Mohd. Haizal Din, Jafri Kamardin, Kamalia Dahri, Muhammad Hashim Idris, Izni Husna |
author_facet |
Anuar, Siti Umairah Jamaluddin, Mohd. Haizal Din, Jafri Kamardin, Kamalia Dahri, Muhammad Hashim Idris, Izni Husna |
author_sort |
Anuar, Siti Umairah |
title |
Triple band MIMO dielectric resonator antenna for LTE applications |
title_short |
Triple band MIMO dielectric resonator antenna for LTE applications |
title_full |
Triple band MIMO dielectric resonator antenna for LTE applications |
title_fullStr |
Triple band MIMO dielectric resonator antenna for LTE applications |
title_full_unstemmed |
Triple band MIMO dielectric resonator antenna for LTE applications |
title_sort |
triple band mimo dielectric resonator antenna for lte applications |
publisher |
Elsevier GmbH |
publishDate |
2020 |
url |
http://eprints.utm.my/id/eprint/87172/ http://dx.doi.org/10.1016/j.aeue.2020.153172 |
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1683230707420233728 |