Joint Maneuver and Beamforming Design for UAV-Enabled Integrated Sensing and Communication
Zhonghao Lyu, Guangxu Zhu, and Jie Xu

TL;DR
This paper proposes joint UAV maneuver and beamforming strategies for integrated sensing and communication, optimizing throughput and sensing performance in static and mobile UAV scenarios.
Contribution
It introduces a novel joint optimization framework for UAV deployment, trajectory, and beamforming in ISAC, using SCA and SDR techniques for non-convex problems.
Findings
Optimized UAV deployment and beamforming improve communication throughput.
Trajectory optimization enhances sensing and communication performance.
Proposed algorithms outperform benchmark schemes in simulations.
Abstract
This paper studies the UAV-enabled integrated sensing and communication (ISAC), in which UAVs are dispatched as aerial dual-functional access points (APs) for efficient ISAC. In particular, we consider a scenario with one UAV-AP equipped with a vertically placed uniform linear array (ULA), which sends combined information and sensing signals to communicate with multiple users and sense potential targets at interested areas on the ground simultaneously. Our objective is to jointly design the UAV maneuver with the transmit beamforming for optimizing the communication performance while ensuring the sensing requirements. First, we consider the quasi-stationary UAV scenario, in which the UAV is deployed at an optimizable location over the whole ISAC mission period. In this case, we jointly optimize the UAV deployment location, as well as the transmit information and sensing beamforming to…
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Taxonomy
TopicsUAV Applications and Optimization · Advanced Wireless Communication Technologies · Indoor and Outdoor Localization Technologies
