Cell-Free Integrated Sensing and Communication
arXiv:2606.18488 · doi:10.1561/1300000079
Abstract
Cell-free (CF) integrated sensing and communication (ISAC) merges the CF architecture with ISAC functionalities. CF-ISAC leverages distributed access points, removes cell boundaries, and enhances coverage, spectral efficiency, and reliability. It also improves energy efficiency, enabling robust multi-user communication, distributed multi-static sensing, and seamless resource optimization. A comprehensive survey on CF-ISAC has been lacking. This monograph addresses that gap by covering the foundational principles, cooperative transmission, radar cross-section, target parameter estimation, ISAC integration levels, sensing metrics, and key applications. It also explores the advantages of multi-static sensing. Performance analysis, resource allocation, security, and user/target-centric designs are discussed. Finally, synchronization, multi-target detection, interference management, and fronthaul limitations are discussed. Advanced antenna technologies, network-assisted systems, near-field CF-ISAC, cross-technology integration, and machine learning approaches are presented.
References in corpus (11)
- Fractional Programming for Communication Systems--Part I: Power Control and Beamforming
- Joint Transmit Beamforming for Multiuser MIMO Communication and MIMO Radar
- Scalable Cell-Free Massive MIMO Systems
- Cramér-Rao Bound Optimization for Joint Radar-Communication Design
- Fractional Programming for Communication Systems--Part II: Uplink Scheduling via Matching
- Near-Field Communications: A Tutorial Review
- System Architecture and Key Technologies for 5G Heterogeneous Cloud Radio Access Networks
- Joint Radar-Communications Strategies for Autonomous Vehicles
- Near-Field Integrated Sensing and Communications
- Scalability Aspects of Cell-Free Massive MIMO
- Toward Integrated Sensing and Communications in IEEE 802.11bf Wi-Fi Networks