paper-with-me

Papers

Efficient UAV Hovering, Resource Allocation, and Trajectory Design for ISAC with Limited Backhaul Capacity

2024-04-30 · Ata Khalili, Atefeh Rezaei, Dongfang Xu, Falko Dressler, Robert Schober

In this paper, we investigate the joint resource allocation and trajectory design for a multi-user, multi-target unmanned aerial vehicle (UAV)-enabled integrated sensing and communication (ISAC) system, where the link capacity between a ground base station (BS) and the UAV is limited. The UAV conducts target sensing and information transmission in orthogonal time slots to prevent interference. As is common in practical systems, sensing is performed while the UAV hovers, allowing the UAV to acquire high-quality sensing data. Subsequently, the acquired sensing data is offloaded to the ground BS for further processing. We jointly optimize the UAV trajectory, UAV velocity, beamforming for the communication users, power allocated to the sensing beam, and time of hovering for sensing to minimize the power consumption of the UAV while ensuring the communication quality of service (QoS) and successful sensing. Due to the prohibitively high complexity of the resulting non-convex mixed integer non-linear program (MINLP), we employ a series of transformations and optimization techniques, including semidefinite relaxation, big-M method, penalty approach, and successive convex approximation, to obtain a low-complexity suboptimal solution. Our simulation results reveal that 1) the proposed design achieves significant power savings compared to two baseline schemes; 2) stricter sensing requirements lead to longer sensing times, highlighting the challenge of efficiently managing both sensing accuracy and sensing time; 3) the optimized trajectory design ensures precise hovering directly above the targets during sensing, enhancing sensing quality and enabling the application of energy-focused beams; and 4) the proposed trajectory design balances the capacity of the backhaul link and the downlink rate of the communication users.

📄 PDF Abstract BibTeX arXiv:2406.16888

Code (0)

등록된 구현이 없습니다.

Tasks

Integrated sensing and communicationISAC

Methods 이 논문이 사용한 방법론

Golden Queue Managers 설명 없음
BASE 설명 없음

Similar Papers 제목 키워드 기반

Energy-Aware Resource Allocation and Trajectory Design for UAV-Enabled ISAC

2023-02-20 · Ata Khalili, Atefeh Rezaei, Dongfang Xu, Robert Schober

In this paper, we investigate joint resource allocation and trajectory design for multi-user multi-target unmanned aerial vehicle (UAV)-enabled integrated sensing and communication (ISAC). To improve sensing accuracy, th…

Integrated sensing and communicationISAC

An Overview of Resource Allocation in Integrated Sensing and Communication

2023-05-15 · Jinming Du, Yanqun Tang, Xizhang Wei, Jiaojiao Xiong 외

Integrated sensing and communication (ISAC) is considered as a promising solution for improving spectrum efficiency and relieving wireless spectrum congestion. This paper systematically introduces the evolutionary path o…

Integrated sensing and communicationISAC

Cell-Free Integrated Sensing and Communication: Principles, Advances, and Future Directions

2025-02-27 · Diluka Galappaththige, Mohammadali Mohammadi, Gayan Aruma Baduge, Chintha Tellambura

Cell-free (CF) integrated sensing and communication (ISAC) combines CF architecture with ISAC. CF employs distributed access points, eliminates cell boundaries, and enhances coverage, spectral efficiency, and reliability…

Integrated sensing and communicationISACparameter estimation

Sensing-Oriented Adaptive Resource Allocation Designs for OFDM-ISAC Systems

2025-04-09 · Peishi Li, Ming Li, Rang Liu, Qian Liu 외

Orthogonal frequency division multiplexing - integrated sensing and communication (OFDM-ISAC) has emerged as a key enabler for future wireless networks, leveraging the widely adopted OFDM waveform to seamlessly integrate…

Integrated sensing and communicationISAC

UAV-Enabled Integrated Sensing and Communication in Maritime Emergency Networks

2024-08-26 · Bohan Li, Jiahao Liu, Junsheng Mu, Pei Xiao 외

With line-of-sight mode deployment and fast response, unmanned aerial vehicle (UAV), equipped with the cutting-edge integrated sensing and communication (ISAC) technique, is poised to deliver high-quality communication a…

Integrated sensing and communicationISACPosition