Trajectory design and resource allocation for UAV energy minimization in a rotary-wing UAV-enabled WPCN

Due to the low efficiency of energy harvest (EH) for the traditional wireless powered communication network (WPCN), we propose a communication scheme based on unmanned aerial vehicle (UAV)-enabled WPCN, which can greatly improve the EH efficiency problem. In this paper, the UAV trajectory, time allo...

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Vydáno v:Alexandria engineering journal Ročník 60; číslo 1; s. 1787 - 1796
Hlavní autoři: Wang, Zhen, Wen, Miaowen, Dang, Shuping, Yu, Lisu, Wang, Yuhao
Médium: Journal Article
Jazyk:angličtina
Vydáno: Elsevier B.V 01.02.2021
Elsevier
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ISSN:1110-0168
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Abstract Due to the low efficiency of energy harvest (EH) for the traditional wireless powered communication network (WPCN), we propose a communication scheme based on unmanned aerial vehicle (UAV)-enabled WPCN, which can greatly improve the EH efficiency problem. In this paper, the UAV trajectory, time allocation, transmit power of UAVs, scheduling of wireless information transfer (WIT) and wireless power transfer (WPT) are jointly optimized to minimize the whole energy consumption. To solve the formulated non-convex problem with multiple constraints and attain locally optimal solution, an iterative algorithm is proposed. Simulations show that our proposed algorithm is superior to other benchmark algorithms.
AbstractList Due to the low efficiency of energy harvest (EH) for the traditional wireless powered communication network (WPCN), we propose a communication scheme based on unmanned aerial vehicle (UAV)-enabled WPCN, which can greatly improve the EH efficiency problem. In this paper, the UAV trajectory, time allocation, transmit power of UAVs, scheduling of wireless information transfer (WIT) and wireless power transfer (WPT) are jointly optimized to minimize the whole energy consumption. To solve the formulated non-convex problem with multiple constraints and attain locally optimal solution, an iterative algorithm is proposed. Simulations show that our proposed algorithm is superior to other benchmark algorithms.
Author Dang, Shuping
Yu, Lisu
Wen, Miaowen
Wang, Yuhao
Wang, Zhen
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Issue 1
Keywords Iterative algorithm
Energy harvest (EH)
Unmanned aerial vehicle (UAV)
UAV trajectory
Non-convex problem
Wireless powered communication network (WPCN)
Language English
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Snippet Due to the low efficiency of energy harvest (EH) for the traditional wireless powered communication network (WPCN), we propose a communication scheme based on...
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SubjectTerms Energy harvest (EH)
Iterative algorithm
Non-convex problem
UAV trajectory
Unmanned aerial vehicle (UAV)
Wireless powered communication network (WPCN)
Title Trajectory design and resource allocation for UAV energy minimization in a rotary-wing UAV-enabled WPCN
URI https://dx.doi.org/10.1016/j.aej.2020.11.027
https://doaj.org/article/b2fbbd47bd4a4929a64b5e1318028e0a
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