Resource Allocation for Secure Dual-UAV-Assisted ISAC System

📅 2026-08-25
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🤖 AI Summary
研究通过优化用户调度、时间分配、传输功率和无人机轨迹,解决双无人机辅助安全ISAC系统的保密性能问题。
📝 Abstract
Integrated sensing and communication (ISAC) is a rising technology in the next wireless communication networks, enabling the simultaneous execution of communication and sensing tasks by fully utilizing limited spectrum resources. In this work, we investigate the secrecy performance of a dual-uncrewed aerial vehicle (UAV)-assisted secure ISAC system. Specifically, a base station UAV communicates with users and transmits radar signals to locate potential eavesdroppers, while simultaneously providing information to a jammer UAV to perform jamming tasks. Considering constraints such as maximum UAV velocity, transmit power, propulsion energy, and sensing thresholds, we maximize the average secrecy rate by optimizing user scheduling strategies, time allocation, transmit power, and UAV trajectories. The presence of a non-convex problem, originating from tightly coupled variables, is tackled by an efficient iterative algorithm. In particular, the original optimization problem is decomposed into six subproblems, and non-convex subproblems are transformed into approximately convex forms via successive convex approximation. Then, block coordinate descent techniques are employed to solve all subproblems sequentially. Numerical results demonstrate the convergence and effectiveness of the proposed algorithm.
Problem

Research questions and friction points this paper is trying to address.

Resource Allocation
Secure ISAC
Dual-UAV
Secrecy Performance
Optimization
Innovation

Methods, ideas, or system contributions that make the work stand out.

dual-UAV-assisted
resource allocation
secure ISAC system
iterative algorithm
successive convex approximation
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