Spatial Throughput Maximization of Wireless Powered Communication Networks

被引:135
作者
Che, Yue Ling [1 ]
Duan, Lingjie [1 ]
Zhang, Rui [2 ,3 ]
机构
[1] Singapore Univ Technol & Design, Engn Syst & Design Pillar, Singapore 487372, Singapore
[2] Natl Univ Singapore, Dept Elect & Comp Engn ing, Singapore 117583, Singapore
[3] ASTAR, Inst Infocomm Res, Singapore 138632, Singapore
关键词
Wireless powered communication networks (WPCN); harvest-then-transmit protocol; radio-frequency (RF) energy harvesting; stochastic geometry; spatial throughput maximization; battery storage; AD HOC NETWORKS; CELLULAR NETWORKS; INFORMATION;
D O I
10.1109/JSAC.2015.2391915
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
080906 [电磁信息功能材料与结构]; 082806 [农业信息与电气工程];
摘要
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.
引用
收藏
页码:1534 / 1548
页数:15
相关论文
共 30 条
[1]
A Tractable Approach to Coverage and Rate in Cellular Networks [J].
Andrews, Jeffrey G. ;
Baccelli, Francois ;
Ganti, Radha Krishna .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2011, 59 (11) :3122-3134
[2]
Baccelli F., 2009, FDN TRENDS NETWORKIN
[3]
Che Y. L., SPATIAL THROUGHPUT M
[4]
On Spatial Capacity of Wireless Ad Hoc Networks with Threshold Based Scheduling [J].
Che, Yue Ling ;
Zhang, Rui ;
Gong, Yi ;
Duan, Lingjie .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2014, 13 (12) :6915-6927
[5]
Fundamentals of Heterogeneous Cellular Networks with Energy Harvesting [J].
Dhillon, Harpreet S. ;
Li, Ying ;
Nuggehalli, Pavan ;
Pi, Zhouyue ;
Andrews, Jeffrey G. .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2014, 13 (05) :2782-2797
[6]
Interference and Outage in Mobile Random Networks: Expectation, Distribution, and Correlation [J].
Gong, Zhenhua ;
Haenggi, Martin .
IEEE TRANSACTIONS ON MOBILE COMPUTING, 2014, 13 (02) :337-349
[7]
Haenggi M., 2008, FDN TRENDS NETWORKIN
[8]
Energy Provisioning in Wireless Rechargeable Sensor Networks [J].
He, Shibo ;
Chen, Jiming ;
Jiang, Fachang ;
Yau, David K. Y. ;
Xing, Guoliang ;
Sun, Youxian .
IEEE TRANSACTIONS ON MOBILE COMPUTING, 2013, 12 (10) :1931-1942
[9]
Optimal Energy Allocation for Wireless Communications With Energy Harvesting Constraints [J].
Ho, Chin Keong ;
Zhang, Rui .
IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2012, 60 (09) :4808-4818
[10]
Enabling Wireless Power Transfer in Cellular Networks: Architecture, Modeling and Deployment [J].
Huang, Kaibin ;
Lau, Vincent K. N. .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2014, 13 (02) :902-912