DocumentCode
8289
Title
Optimal Relay Placement in Two-Hop RF Energy Transfer
Author
Mishra, Deepak ; De, Swades
Author_Institution
Dept. of Electr. Eng., Indian Inst. of Technol. Delhi, New Delhi, India
Volume
63
Issue
5
fYear
2015
fDate
May-15
Firstpage
1635
Lastpage
1647
Abstract
Recently, wireless radio frequency energy transfer (RFET) has emerged as an effective technology for prolonging lifetime of the energy-limited wireless sensor networks. However, low RFET efficiency is still a fundamental bottleneck in its widespread usage. Multi-hop RF energy transfer (MHET) can improve the RFET efficiency by deploying relay nodes that scavenge the dispersed energy and transfer it to the nearby sensor node. The efficiency of MHET is strongly influenced by the relay node´s placement. To maximize the RFET efficiency for a two-hop scenario, in this paper a novel optimization model is proposed to determine the optimal relay placement (ORP) on an Euclidean x-y plane. Nontrivial tradeoff between the energy scavenged at the relay versus the effective energy delivered by the relay to the target node is investigated. Due to the nonconvex and highly nonlinear nature of the optimization problem, an α-based branch and bound algorithm has been used. The proposed optimization model is further extended by incorporating distributed beamforming to enhance the RFET efficiency. Numerical results illustrate that the proposed algorithm provides convergence to the ϵ-global optimal solution in a few iterations, and ORP provides significant energy saving over arbitrary relay positions for commercial RF energy harvesting systems.
Keywords
array signal processing; concave programming; inductive power transmission; radiofrequency power transmission; relay networks (telecommunication); telecommunication network reliability; tree searching; wireless sensor networks; α-based branch and bound algorithm; ϵ-global optimal solution; Euclidean x-y plane; MHET; ORP; commercial RF energy harvesting systems; distributed beamforming; energy-limited wireless sensor networks; low RFET efficiency; multihop RF energy transfer; nearby sensor node; nonconvex optimization problem; optimal relay placement; optimization model; relay node placement; two-hop RF energy transfer; wireless radio frequency energy transfer; Array signal processing; Capacitors; Energy exchange; Radio frequency; Receivers; Relays; Wireless sensor networks; RF energy harvesting; distributed beamforming; energy transfer efficiency; optimal relay placement; two-hop RF energy transfer;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2015.2418253
Filename
7073612
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