Zipf Distribution Power AllocationAapproach for NOMA Systems

Non-orthogonal multiple access (NOMA) has received tremendous attention for the development of 5G and beyond wireless networks. Power-domain NOMA works on the concept of assigning varying power levels to users within the same frequency and time block. In this paper we propose a novel power allocatio...

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Main Authors: Hanane Himeur, Sidi Mohammed Meriah, Fouad Derraz
Format: Article
Language:English
Published: Polish Academy of Sciences 2023-09-01
Series:International Journal of Electronics and Telecommunications
Subjects:
Online Access:https://journals.pan.pl/Content/128296/PDF/20_21_4209_Himeur_sk.pdf
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author Hanane Himeur
Sidi Mohammed Meriah
Fouad Derraz
author_facet Hanane Himeur
Sidi Mohammed Meriah
Fouad Derraz
author_sort Hanane Himeur
collection DOAJ
description Non-orthogonal multiple access (NOMA) has received tremendous attention for the development of 5G and beyond wireless networks. Power-domain NOMA works on the concept of assigning varying power levels to users within the same frequency and time block. In this paper we propose a novel power allocation approach that uses the Zipf distribution law that satisfies the basic condition of a NOMA system. The Zipf PA is characterized by the simplicity and ease of implementation that allows to extend the capacity of the system to support a large number of users. The numerical results show that the system achieves high throughput and energy efficiency without any parameter optimization constraints as well as improved capacity by increasing the number of users compared to the NOMA system with existing power allocation techniques.
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spelling doaj.art-c4a4b5ea7a2d4e3ea199f042013ab7f72023-09-01T08:56:54ZengPolish Academy of SciencesInternational Journal of Electronics and Telecommunications2081-84912300-19332023-09-01vol. 69No 3559564https://doi.org/10.24425/ijet.2023.146507Zipf Distribution Power AllocationAapproach for NOMA SystemsHanane Himeur0Sidi Mohammed Meriah1Fouad Derraz2Faculty of Technology, University of Abou Bekr Belkaid, Tlemcen, AlgeriaFaculty of Technology, University of Abou Bekr Belkaid, Tlemcen, AlgeriaFaculty of Technology, University of Abou Bekr Belkaid, Tlemcen, AlgeriaNon-orthogonal multiple access (NOMA) has received tremendous attention for the development of 5G and beyond wireless networks. Power-domain NOMA works on the concept of assigning varying power levels to users within the same frequency and time block. In this paper we propose a novel power allocation approach that uses the Zipf distribution law that satisfies the basic condition of a NOMA system. The Zipf PA is characterized by the simplicity and ease of implementation that allows to extend the capacity of the system to support a large number of users. The numerical results show that the system achieves high throughput and energy efficiency without any parameter optimization constraints as well as improved capacity by increasing the number of users compared to the NOMA system with existing power allocation techniques.https://journals.pan.pl/Content/128296/PDF/20_21_4209_Himeur_sk.pdfnomawireless networkspower domainzipf distribution law5g networks
spellingShingle Hanane Himeur
Sidi Mohammed Meriah
Fouad Derraz
Zipf Distribution Power AllocationAapproach for NOMA Systems
International Journal of Electronics and Telecommunications
noma
wireless networks
power domain
zipf distribution law
5g networks
title Zipf Distribution Power AllocationAapproach for NOMA Systems
title_full Zipf Distribution Power AllocationAapproach for NOMA Systems
title_fullStr Zipf Distribution Power AllocationAapproach for NOMA Systems
title_full_unstemmed Zipf Distribution Power AllocationAapproach for NOMA Systems
title_short Zipf Distribution Power AllocationAapproach for NOMA Systems
title_sort zipf distribution power allocationaapproach for noma systems
topic noma
wireless networks
power domain
zipf distribution law
5g networks
url https://journals.pan.pl/Content/128296/PDF/20_21_4209_Himeur_sk.pdf
work_keys_str_mv AT hananehimeur zipfdistributionpowerallocationaapproachfornomasystems
AT sidimohammedmeriah zipfdistributionpowerallocationaapproachfornomasystems
AT fouadderraz zipfdistributionpowerallocationaapproachfornomasystems