Joint Trajectory and Resource Allocation Optimization for Air-ground Collaborative Integrated Sensing and Communication Systems

被引:0
|
作者
Zhang G. [1 ]
Gu Z. [1 ]
Cui M. [1 ]
机构
[1] School of Information Engineering, Guangdong University of Technology, Guangzhou
关键词
Air-ground collaboration; Integrated sensing and communication; Resource allocation; Trajectory optimization;
D O I
10.11999/JEIT230716
中图分类号
学科分类号
摘要
An air-ground collaborative integrated sensing and communication system is studied, where the air-ground collaborative network is composed of an Unmanned Ground Vehicle (UGV) base station and Unmanned Aerial Vehicle (UAV) relays. The network provides communication service for ground users while detecting and sensing target areas. The air-ground channels are modeled as the accurate Rician fading channel model. On the constraints of the sensing frequency and the effective sensing power threshold of the target areas, the minimum average communication rate of all users is maximized by jointly optimizing the communication and sensing association of the system, the transmit power and flight trajectory of the UAV relays, as well as the transmit power and trajectory of the UGV base station. To solve the resultant non-convex integer optimization problem with highly coupled variables, the block coordinate descent method is applied to decompose the original optimization problem into four sub-problems, where relaxation variables are introduced, and the integer constraints are converted into penalty terms. Then, it is proved that the effective sensing power is a composition function of the trajectory variables and the relaxation variables and is a jointly convex function of them, so that the non-convex terms are tackled by using the successive convex optimization method. Lastly, a two-layer iterative algorithm is proposed to obtain the suboptimal solution efficiently. It is shown by simulation results that compared to some benchmark algorithms, the proposed algorithm significantly increases the minimum average communication rate of all users while achieving the same sensing performance and achieves a better performance trade-off between communication and sensing with good convergence performance. © 2024 Science Press. All rights reserved.
引用
收藏
页码:2382 / 2390
页数:8
相关论文
共 18 条
  • [1] LIU Fan, CUI Yuanhao, MASOUROS C, Et al., Integrated sensing and communications: Toward dual-functional wireless networks for 6G and beyond[J], IEEE Journal on Selected Areas in Communications, 40, 6, pp. 1728-1767, (2022)
  • [2] CUI Yuanhao, LIU Fan, JING Xiaojun, Et al., Integrating sensing and communications for ubiquitous IoT: Applications, trends, and challenges[J], IEEE Network, 35, 5, pp. 158-167, (2021)
  • [3] SAAD W, BENNIS M, CHEN Mingzhe, A vision of 6G wireless systems: Applications, trends, technologies, and open research problems[J], IEEE Network, 34, 3, pp. 134-142, (2020)
  • [4] ZHANG J A, RAHMAN M L, WU Kai, Et al., Enabling joint communication and radar sensing in mobile networks—a survey[J], IEEE Communications Surveys & Tutorials, 24, 1, pp. 306-345, (2022)
  • [5] LIU Tianyu, CUI Miao, ZHANG Guangchi, Et al., 3D trajectory and transmit power optimization for UAV-enabled multi-link relaying systems[J], IEEE Transactions on Green Communications and Networking, 5, 1, pp. 392-405, (2021)
  • [6] WANG Xinyi, FEI Zesong, ZHANG J A, Et al., Constrained utility maximization in dual-functional radar-communication multi-UAV networks[J], IEEE Transactions on Communications, 69, 4, pp. 2660-2672, (2021)
  • [7] Zhonghao LYU, Guangxu ZHU, Jie XU, Joint maneuver and beamforming design for UAV-enabled integrated sensing and communication[J], IEEE Transactions on Wireless Communications, 22, 4, pp. 2424-2440, (2023)
  • [8] MENG Kaitao, WU Qingqing, MA Shaodan, Et al., UAV trajectory and beamforming optimization for integrated periodic sensing and communication[J], IEEE Wireless Communications Letters, 11, 6, pp. 1211-1215, (2022)
  • [9] WU Jun, YUAN Weijie, BAI Lin, On the interplay between sensing and communications for UAV trajectory design[J], IEEE Internet of Things Journal, 10, 23, pp. 20383-20395, (2023)
  • [10] DENG Cailian, Xuming FANG, WANG Xianbin, Beamforming design and trajectory optimization for UAV-empowered adaptable integrated sensing and communication[J], IEEE Transactions on Wireless Communications, 22, 11, pp. 8512-8526, (2023)