Networked ISAC for Low-Altitude Economy: Transmit Beamforming and UAV Trajectory Design (2405.07568v1)
Abstract: This paper studies the exploitation of networked integrated sensing and communications (ISAC) to support low-altitude economy (LAE), in which a set of networked ground base stations (GBSs) transmit wireless signals to cooperatively communicate with multiple authorized unmanned aerial vehicles (UAVs) and concurrently use the echo signals to detect the invasion of unauthorized objects in interested airspace. Under this setup, we jointly design the cooperative transmit beamforming at multiple GBSs together with the trajectory control of authorized UAVs and their GBS associations, for enhancing the authorized UAVs' communication performance while ensuring the sensing requirements for airspace monitoring. In particular, our objective is to maximize the average sum rate of authorized UAVs over a particular flight period, subject to the minimum illumination power constraints for sensing over the interested airspace, the maximum transmit power constraints at individual GBSs, and the flight constraints at UAVs. This problem is non-convex and challenging to solve, due to the involvement of integer variables and the coupling of optimization variables. To solve this non-convex problem, we propose an efficient algorithm by using the techniques of alternating optimization (AO), successive convex approximation (SCA), and semi-definite relaxation (SDR). Numerical results show that the obtained transmit beamforming and UAV trajectory designs in the proposed algorithm efficiently balance the tradeoff between the sensing and communication performances, thus significantly outperforming various benchmarks.
- China Telecom, Ericsson, Nokia, Huawei, ZTE, CICT Mobile, OPPO, Xiaomi, vivo, Lenovo, Qualcomm, Mediatek, UNISOC, “The low-altitude network by integrated sensing and communication,” White Paper, Feb. 2024. [Online]. Available: https://www.zte.com.cn/content/dam/zte-site/res-www-zte-com-cn/mediares/zte/%E6%97%A0%E7%BA%BF%E6%8E%A5%E5%85%A5/%E7%99%BD%E7%9A%AE%E4%B9%A6/Low_altitude_network_by_ISAC.pdf
- J. Mu, R. Zhang, Y. Cui, N. Gao, and X. Jing, “UAV meets integrated sensing and communication: Challenges and future directions,” IEEE Commun. Mag., vol. 61, no. 5, pp. 62–67, Jan. 2023.
- A. Zhang, M. L. Rahman, X. Huang, Y. J. Guo, S. Chen, and R. W. Heath, “Perceptive mobile networks: Cellular networks with radio vision via joint communication and radar sensing,” IEEE Veh. Technol. Mag., vol. 16, no. 2, pp. 20–30, Jun. 2021.
- F. Dong, F. Liu, Y. Cui, W. Wang, K. Han, and Z. Wang, “Sensing as a service in 6G perceptive networks: A unified framework for ISAC resource allocation,” IEEE Trans. Wireless Commun., vol. 22, no. 5, pp. 3522–3536, May 2023.
- Z. Fei, X. Wang, N. Wu, J. Huang, and J. A. Zhang, “Air-ground integrated sensing and communications: Opportunities and challenges,” IEEE Commun. Mag., vol. 61, no. 5, pp. 55–61, Feb. 2023.
- K. Meng, Q. Wu, J. Xu, W. Chen, Z. Feng, R. Schober, and A. L. Swindlehurst, “UAV-enabled integrated sensing and communication: Opportunities and challenges,” IEEE Wireless Commun., vol. 31, no. 2, pp. 97–104, Apr. 2023.
- K. Meng, Q. Wu, S. Ma, W. Chen, K. Wang, and J. Li, “Throughput maximization for UAV-enabled integrated periodic sensing and communication,” IEEE Trans. Wireless Commun., vol. 22, no. 1, pp. 671–687, Aug. 2022.
- Z. Lyu, G. Zhu, and J. Xu, “Joint maneuver and beamforming design for UAV-enabled integrated sensing and communication,” IEEE Trans. Wireless Commun., vol. 22, no. 4, pp. 2424–2440, Oct. 2022.
- X. Wang, Z. Fei, J. A. Zhang, J. Huang, and J. Yuan, “Constrained utility maximization in dual-functional radar-communication multi-UAV networks,” IEEE Trans. Commun., vol. 69, no. 4, pp. 2660–2672, Apr. 2021.
- J. Wu, W. Yuan, and L. Bai, “On the interplay between sensing and communications for UAV trajectory design,” IEEE Internet Things J., vol. 10, no. 23, pp. 20 383–20 395, Jun. 2023.
- M. Grant and S. Boyd, “CVX: Matlab software for disciplined convex programming, version 2.1,” 2014. [Online]. Available: http://cvxr.com/cvx/
- G. Cheng, Y. Fang, J. Xu, and D. W. K. Ng, “Optimal coordinated transmit beamforming for networked integrated sensing and communications,” IEEE Trans. Wireless Commun., pp. 1–1, early access, Jan. 2024.