Title
Throughput Maximization Of Uav-Enabled Wireless Network In The Presence Of Jammers: Joint Trajectory And Communication Design
Abstract
Unmanned aerial vehicle (UAV) communication has drawn rising interest recently with the distinctive gains brought by its inherent mobility. In this paper, we investigate the throughput maximization problem in UAV-enabled uplink communication, where multiple ground nodes communicate with a UAV while a group of ground jammers send jamming signals to jam the communications between UAV and the ground nodes. In contrast to the previous works that only considering UAV's transmit power allocation and two-dimension (2D) trajectory design, the ground nodes' transmit power allocation and scheduling along with the UAV's three-dimensional (3D) trajectory design are jointly optimized. The formulated throughput maximization problem is a mixed-integer non-convex programme that hard to be solved in general. Thus, we propose an iterative algorithm to make the problem trackable by applying the block coordinate descent and successive convex optimization techniques. Simulation results show that our proposed algorithm outperforms the benchmark methods that improving the throughput of the system significantly.
Year
DOI
Venue
2019
10.1587/transcom.2018DRP0034
IEICE TRANSACTIONS ON COMMUNICATIONS
Keywords
Field
DocType
unmanned aerial vehicle, trajectory optimization, jammer
Wireless network,Communication design,Real-time computing,Theoretical computer science,Throughput maximization,Trajectory,Mathematics
Journal
Volume
Issue
ISSN
E102B
10
0916-8516
Citations 
PageRank 
References 
0
0.34
0
Authors
4
Name
Order
Citations
PageRank
Yang Wu18418.42
Weiwei Yang222850.42
Di Zhang304.06
Xiaoli Sun400.34