Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System

Smart antenna system has been studied extensively for the fifth generation of wireless communication systems, because it has made a system better performance of higher capacity and coverage as well as of power-saving. The present paper introduces a design of planar microstrip patch antenna array for...

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Main Authors: zhwan mohammed rashid, Asaad M. Jassim Al-Hindawi
Format: Article
Language:English
Published: Sulaimani Polytechnic University 2019-12-01
Series:Kurdistan Journal of Applied Research
Subjects:
Online Access:http://kjar.spu.edu.iq/index.php/kjar/article/view/373
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spelling doaj-0ce4731268154493937c55944e4a82cc2020-11-24T21:40:55ZengSulaimani Polytechnic UniversityKurdistan Journal of Applied Research2411-76842411-77062019-12-014215817210.24017/science.2019.2.16373Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile Systemzhwan mohammed rashid0Asaad M. Jassim Al-Hindawi1Department of Communication Engineering, Technical College of Engineering, Sulaimani Polytechnic University, Sulaimani, IraqDepartment of Communication Engineering, Technical College of Engineering, Sulaimani Polytechnic University, Sulaimani, IraqSmart antenna system has been studied extensively for the fifth generation of wireless communication systems, because it has made a system better performance of higher capacity and coverage as well as of power-saving. The present paper introduces a design of planar microstrip patch antenna array for a smart mobile system operating at 28 GHz. The present smart antenna has an adaptive radiation pattern that adjusts its main beam automatically to the desired direction by following the signal environment. This is based on the processing of an algorithm called the Least Mean Square (LMS) resulting in a change in the magnitude and phase of the feeding current for each element in the antenna array. From the obtained results, the main beam can be steered 180 degrees in the phi (azimuth) plane at a constant theta (elevation) angle. The planar antenna array was designed and simulated using CST Microwave Studio and MATLAB software that is used to find the required exciting current for each element. It is found that the antenna bandwidth is greater than 1 GHz while its gain is about 21 dB.http://kjar.spu.edu.iq/index.php/kjar/article/view/373smart antenna, planar array, lms beamforming, adaptive radiation pattern, microstrip patch.
collection DOAJ
language English
format Article
sources DOAJ
author zhwan mohammed rashid
Asaad M. Jassim Al-Hindawi
spellingShingle zhwan mohammed rashid
Asaad M. Jassim Al-Hindawi
Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System
Kurdistan Journal of Applied Research
smart antenna, planar array, lms beamforming, adaptive radiation pattern, microstrip patch.
author_facet zhwan mohammed rashid
Asaad M. Jassim Al-Hindawi
author_sort zhwan mohammed rashid
title Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System
title_short Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System
title_full Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System
title_fullStr Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System
title_full_unstemmed Design of Adaptive Planar Microstrip Patch Array Operating at 28 GHz for 5G Smart Mobile System
title_sort design of adaptive planar microstrip patch array operating at 28 ghz for 5g smart mobile system
publisher Sulaimani Polytechnic University
series Kurdistan Journal of Applied Research
issn 2411-7684
2411-7706
publishDate 2019-12-01
description Smart antenna system has been studied extensively for the fifth generation of wireless communication systems, because it has made a system better performance of higher capacity and coverage as well as of power-saving. The present paper introduces a design of planar microstrip patch antenna array for a smart mobile system operating at 28 GHz. The present smart antenna has an adaptive radiation pattern that adjusts its main beam automatically to the desired direction by following the signal environment. This is based on the processing of an algorithm called the Least Mean Square (LMS) resulting in a change in the magnitude and phase of the feeding current for each element in the antenna array. From the obtained results, the main beam can be steered 180 degrees in the phi (azimuth) plane at a constant theta (elevation) angle. The planar antenna array was designed and simulated using CST Microwave Studio and MATLAB software that is used to find the required exciting current for each element. It is found that the antenna bandwidth is greater than 1 GHz while its gain is about 21 dB.
topic smart antenna, planar array, lms beamforming, adaptive radiation pattern, microstrip patch.
url http://kjar.spu.edu.iq/index.php/kjar/article/view/373
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AT asaadmjassimalhindawi designofadaptiveplanarmicrostrippatcharrayoperatingat28ghzfor5gsmartmobilesystem
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