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Open Access

Aerial-networked ISAC-empowered collaborative energy-efficient covert communications

Jun WUaWeijie YUANa( )Qin TAObHongjia HUANGaDerrick Wing Kwan NGc
School of System Design and Intelligent Manufacturing, Southern University of Science and Technology, Shenzhen 518055, China
School of Information Science and Technology, Hangzhou Normal University, Hangzhou 311121, China
School of Electrical Engineering and Telecommunications, University of New South Wales, Sydney, NSW 2052, Australia

Special Issue: Secure and Covert UAV Communication.

☆☆ Peer review under responsibility of Editorial Committee of CJA.

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Abstract

Covert unmanned aerial vehicle (UAV) communication has garnered considerable attention in wireless systems for realizing the sustainable low-altitude economy (LAE). This paper investigates the system policy, trajectory design, and resource allocation for energy-efficient aerial networked systems with the aid of an integrated sensing and communications (ISAC) framework, in which multiple UAVs are employed to simultaneously conduct cooperative sensing and covert downlink transmissions to multiple ground users (GUs) in the presence of a mobile warden (Willie). Specifically, to improve the communication covertness, UAVs are strategically switched between jamming (JUAV) and information (IUAV) modes. Additionally, to cope with the mobility of Willie, an unscented Kalman filtering (UKF)-based method is employed to track and predict Willie’s location relying on the delay and Doppler measurements extracted from the ISAC echoes. Capitalizing on the predicted Willie’s location, a real-time energy efficiency (EE) maximization problem is formulated by jointly optimizing the JUAV selection strategy, IUAV-GU scheduling, communication/jamming power allocation, and UAV trajectories design. The formulation takes into account the communication covertness requirement and the maximum transmit power budget, leading to a mixed-integer non-convex fractional programming. To tackle this challenge, the alternating optimization (AO) approach is adopted, which decomposes the original problem into a series of sub-problems, allowing us to obtain an efficient sub-optimal solution. Simulation results demonstrate that the proposed scheme is capable of tracking Willie accurately and offering excellent system EE performance compared to various benchmark schemes adopting existing designs.

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Chinese Journal of Aeronautics

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Cite this article:
WU J, YUAN W, TAO Q, et al. Aerial-networked ISAC-empowered collaborative energy-efficient covert communications. Chinese Journal of Aeronautics, 2025, 38(10). https://doi.org/10.1016/j.cja.2025.103451

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Received: 14 August 2024
Revised: 10 September 2024
Accepted: 06 November 2024
Published: 03 March 2025
© 2025 The Author(s). Chinese Society of Aeronautics and Astronautics.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).