The paper proposes a resource allocation optimization problem for ISAC-enabled multi-UAV cooperative networks. The goal is to maximize the weighted sum of the system's average sum rate and the localization quality of service (QoS) by jointly optimizing cell association, communication power allocation, and sensing power allocation.
Key highlights:
The paper first introduces the network model, communication model, and sensing model for the ISAC-enabled multi-UAV cooperative network. Then, the resource allocation optimization problem is formulated to maximize the weighted sum of the system's average sum rate and localization QoS.
Since the problem is a mixed-integer nonconvex problem, the authors propose the AIBOT algorithm to solve it effectively. The AIBOT algorithm alternately solves the cell association optimization subproblem and the transmit power optimization subproblem using optimal transport theory.
The simulation results demonstrate the effectiveness of the proposed AIBOT algorithm in achieving high-rate communication and high-accuracy localization in ISAC-enabled multi-UAV networks compared to benchmark algorithms.
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