Joint Trajectory Optimization and User Scheduling for Rotary-Wing UAV-Enabled Wireless Powered Communication Networks

被引:33
作者
Wang, Zhen [1 ,2 ]
Xu, Wenjun [1 ]
Yang, Dingcheng [2 ]
Lin, Jiaru [1 ]
机构
[1] Beijing Univ Posts & Telecommun, Key Lab Universal Wireless Commun, Minist Educ, Beijing 100876, Peoples R China
[2] Nanchang Univ, Informat Engn Sch, Nanchang 330031, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
UAV communication; energy minimization; rotary-wing UAV; wireless powered communication networks; path discretization; RESOURCE-ALLOCATION; THROUGHPUT MAXIMIZATION; DESIGN; SKY;
D O I
10.1109/ACCESS.2019.2959637
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Wireless powered communication networks are promising in the next generation wireless communication systems since they can prolong the communication time of users. However, the wireless powered performance is limited due to the low energy harvesting efficiency caused by channel fading. In order to tackle this issue, rotary-wing unmanned aerial vehicle (UAV) enabled wireless powered communication network (WPCN) is first proposed to provide energy harvesting and information transmission to multiple ground users. Then, the energy consumption minimization problem for the UAV-enabled WPCN is formulated subject to the speed, initial and final positions of the UAV, the energy harvesting causality and user scheduling constraints. Finally, an efficient algorithm by employing the path discretization and successive convex approximation techniques is proposed to solve the challenging non-convex problem. Simulation results show that our proposed scheme can efficiently balance the energy harvesting phase and transmission phase based on the optimal trajectory design, moreover, it outperforms other benchmark schemes in terms of the energy consumption.
引用
收藏
页码:181369 / 181380
页数:12
相关论文
共 37 条
[1]   Practical Non-Linear Energy Harvesting Model and Resource Allocation for SWIPT Systems [J].
Boshkovska, Elena ;
Ng, Derrick Wing Kwan ;
Zlatanov, Nikola ;
Schober, Robert .
IEEE COMMUNICATIONS LETTERS, 2015, 19 (12) :2082-2085
[2]   UAV Hovering Strategy Based on a Wirelessly Powered Communication Network [J].
Chen, Haole ;
Li, Deshi ;
Wang, Yuqin ;
Yin, Feng .
IEEE ACCESS, 2019, 7 :3194-3205
[3]   Weighted Harvest-Then-Transmit: UAV-Enabled Wireless Powered Communication Networks [J].
Cho, Sungryung ;
Lee, Kyungrak ;
Kang, Boojoong ;
Koo, Kwangmin ;
Joe, Inwhee .
IEEE ACCESS, 2018, 6 :72212-72224
[4]   Flight Time Minimization of UAV for Data Collection Over Wireless Sensor Networks [J].
Gong, Jie ;
Chang, Tsung-Hui ;
Shen, Chao ;
Chen, Xiang .
IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 2018, 36 (09) :1942-1954
[5]  
Grant M., CVX: Matlab software for disciplined convex programming
[6]   Resource Allocation and 3-D Trajectory Design in Wireless Networks Assisted by Rechargeable UAV [J].
Guo, Yijun ;
Yin, Sixing ;
Hao, Jianjun .
IEEE WIRELESS COMMUNICATIONS LETTERS, 2019, 8 (03) :781-784
[7]   Resource Allocation for Secure UAV-Assisted SWIPT Systems [J].
Hong, Xianggong ;
Liu, Pengpeng ;
Zhou, Fuhui ;
Guo, Sen ;
Chu, Zheng .
IEEE ACCESS, 2019, 7 :24248-24257
[8]  
Jiang C, 2019, INT J PR ENG MAN-GT, V6, P1
[9]   Joint Position and Time Allocation Optimization of UAV Enabled Time Allocation Optimization Networks [J].
Jiang, Miao ;
Li, Yiqing ;
Zhang, Qi ;
Qin, Jiayin .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2019, 67 (05) :3806-3816
[10]   Simultaneous Wireless Information and Power Transfer in Modern Communication Systems [J].
Krikidis, Ioannis ;
Timotheou, Stelios ;
Nikolaou, Symeon ;
Zheng, Gan ;
Ng, Derrick Wing Kwan ;
Schober, Robert .
IEEE COMMUNICATIONS MAGAZINE, 2014, 52 (11) :104-110