Game theory-based IoT efficient power control in cognitive UAV

With the help of network densification, network coverage as well as the throughput can be improved via ultra-dense networks (UDNs). In tandem, Unmanned Aerial Vehicle (UAV) communications have recently garnered much attention because of their high agility as well as widespread applications. In this...

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Main Authors: Mukhlif, Fadhil, Ithnin, Norafida, Abdulghafoor, Omar, Alotaibi, Faiz, Alotaibi, Nourah Saad
Format: Article
Language:English
Published: Tech Science Press 2022
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Online Access:http://eprints.utm.my/103266/1/NorafidaIthnin2022_GameTheoryBasedIoTEfficient.pdf
http://eprints.utm.my/103266/
http://dx.doi.org/10.32604/cmc.2022.026074
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.1032662023-10-24T10:07:35Z http://eprints.utm.my/103266/ Game theory-based IoT efficient power control in cognitive UAV Mukhlif, Fadhil Ithnin, Norafida Abdulghafoor, Omar Alotaibi, Faiz Alotaibi, Nourah Saad QA76 Computer software With the help of network densification, network coverage as well as the throughput can be improved via ultra-dense networks (UDNs). In tandem, Unmanned Aerial Vehicle (UAV) communications have recently garnered much attention because of their high agility as well as widespread applications. In this paper, a cognitive UAV is proposed for wireless nodes power pertaining to the IoT ground terminal. Further, the UAV is included in the IoT system as the source of power for the wireless nodes as well as for resource allocation. The quality of service (QoS) related to the cognitive node was considered as a utility function based on pricing scheme that was modelled as a non-cooperative game theory in order to maximise users' net utility function. Moreover, an energy efficiency non-cooperative game theory power allocation with pricing scheme (EE-NGPAP) is proposed to obtain an efficient power control within IoT wireless nodes. Further, uniqueness and existence of the Nash equilibrium have been demonstrated mathematically and through simulation. Simulation results show that the proposed energy harvest algorithm demonstrated considerable decrease in transmitted power consumption in terms of average power reduction, which is regarded to be apt with the 5Gnetworks' vision. Finally, the proposed algorithm requires around 4 iterations only to converge to NE which makes the algorithm more suitable in practical heterogeneous scenarios. Tech Science Press 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/103266/1/NorafidaIthnin2022_GameTheoryBasedIoTEfficient.pdf Mukhlif, Fadhil and Ithnin, Norafida and Abdulghafoor, Omar and Alotaibi, Faiz and Alotaibi, Nourah Saad (2022) Game theory-based IoT efficient power control in cognitive UAV. Computers, Materials and Continua, 72 (1). pp. 1561-1578. ISSN 1546-2218 http://dx.doi.org/10.32604/cmc.2022.026074 DOI : 10.32604/cmc.2022.026074
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QA76 Computer software
spellingShingle QA76 Computer software
Mukhlif, Fadhil
Ithnin, Norafida
Abdulghafoor, Omar
Alotaibi, Faiz
Alotaibi, Nourah Saad
Game theory-based IoT efficient power control in cognitive UAV
description With the help of network densification, network coverage as well as the throughput can be improved via ultra-dense networks (UDNs). In tandem, Unmanned Aerial Vehicle (UAV) communications have recently garnered much attention because of their high agility as well as widespread applications. In this paper, a cognitive UAV is proposed for wireless nodes power pertaining to the IoT ground terminal. Further, the UAV is included in the IoT system as the source of power for the wireless nodes as well as for resource allocation. The quality of service (QoS) related to the cognitive node was considered as a utility function based on pricing scheme that was modelled as a non-cooperative game theory in order to maximise users' net utility function. Moreover, an energy efficiency non-cooperative game theory power allocation with pricing scheme (EE-NGPAP) is proposed to obtain an efficient power control within IoT wireless nodes. Further, uniqueness and existence of the Nash equilibrium have been demonstrated mathematically and through simulation. Simulation results show that the proposed energy harvest algorithm demonstrated considerable decrease in transmitted power consumption in terms of average power reduction, which is regarded to be apt with the 5Gnetworks' vision. Finally, the proposed algorithm requires around 4 iterations only to converge to NE which makes the algorithm more suitable in practical heterogeneous scenarios.
format Article
author Mukhlif, Fadhil
Ithnin, Norafida
Abdulghafoor, Omar
Alotaibi, Faiz
Alotaibi, Nourah Saad
author_facet Mukhlif, Fadhil
Ithnin, Norafida
Abdulghafoor, Omar
Alotaibi, Faiz
Alotaibi, Nourah Saad
author_sort Mukhlif, Fadhil
title Game theory-based IoT efficient power control in cognitive UAV
title_short Game theory-based IoT efficient power control in cognitive UAV
title_full Game theory-based IoT efficient power control in cognitive UAV
title_fullStr Game theory-based IoT efficient power control in cognitive UAV
title_full_unstemmed Game theory-based IoT efficient power control in cognitive UAV
title_sort game theory-based iot efficient power control in cognitive uav
publisher Tech Science Press
publishDate 2022
url http://eprints.utm.my/103266/1/NorafidaIthnin2022_GameTheoryBasedIoTEfficient.pdf
http://eprints.utm.my/103266/
http://dx.doi.org/10.32604/cmc.2022.026074
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