DocumentCode :
17966
Title :
Spatial Throughput Maximization of Wireless Powered Communication Networks
Author :
Yue Ling Che ; Lingjie Duan ; Rui Zhang
Author_Institution :
Eng. Syst. & Design Pillar, Singapore Univ. of Technol. & Design, Singapore, Singapore
Volume :
33
Issue :
8
fYear :
2015
fDate :
Aug. 2015
Firstpage :
1534
Lastpage :
1548
Abstract :
Wireless charging is a promising way to power wireless nodes´ transmissions. This paper considers new dual-function access points (APs), which are able to support the energy/information transmission to/from wireless nodes. We focus on a large-scale wireless powered communication network (WPCN), and use stochastic geometry to analyze the wireless nodes´ performance tradeoff between energy harvesting and information transmission. We study two cases with battery-free and battery-deployed wireless nodes. For both cases, we consider a harvest-then-transmit protocol by partitioning each time frame into a downlink (DL) phase for energy transfer, and an uplink (UL) phase for information transfer. By jointly optimizing frame partition between the two phases and the wireless nodes´ transmit power, we maximize the wireless nodes´ spatial throughput subject to a successful information transmission probability constraint. For the battery-free case, we show that the wireless nodes prefer to choose small transmit power to obtain large transmission opportunity. For the battery-deployed case, we first study an ideal infinite-capacity battery scenario for wireless nodes, and show that the optimal charging design is not unique, due to the sufficient energy stored in the battery. We then extend to the practical finite-capacity battery scenario. Although the exact performance is difficult to be obtained analytically, it is shown to be upper and lower bounded by those in the infinite-capacity battery scenario and the battery-free case, respectively. Finally, we provide numerical results to corroborate our study.
Keywords :
energy harvesting; optimisation; probability; protocols; radiofrequency power transmission; secondary cells; DL phase; UL phase; WPCN; battery-deployed wireless node; battery-free; downlink phase; dual function AP; dual-function access point; energy harvesting; harvest-then-transmit protocol; infinite-capacity battery; information transfer; information transmission probability constraint; performance tradeoff; spatial throughput maximization; stochastic geometry; time frame partitioning; transmit power; uplink phase; wireless charging; wireless powered communication network; Batteries; Energy harvesting; Information processing; Radio frequency; Throughput; Wireless communication; Wireless sensor networks; Wireless powered communication networks (WPCN); Wireless powered communication networks (WPCN),; battery storage; harvest-then-transmit protocol; radio-frequency (RF) energy harvesting; spatial throughput maximization; stochastic geometry;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2015.2391915
Filename :
7009965
Link To Document :
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