TY - GEN
T1 - Design and Implementation of a Communication-Computing-Caching Integrated Air-to-Ground Collaborative Ad Hoc Network System
AU - He, Yixin
AU - Huang, Fanghui
AU - Wang, Dawei
AU - Li, Jiawei
AU - Jin, Yi
AU - Li, Li
AU - Zhou, Fuhui
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - The use of communication modules mounted on uncrewed aerial vehicles (UAVs) to establish aerial base stations enables rapid and cost-effective network deployment, facilitates line-of-sight (LoS) transmission, and thereby provides higherquality communication services. The UAV-based air-to-ground collaborative ad hoc network, with its wide coverage and flexibility, is expected to play a crucial role in future cellular communications. Motivated by the above, we investigate networking technologies for air-to-ground collaborative mechanisms in highly dynamic, large-scale environments and design a communication-computing-caching integrated air-to-ground collaborative ad hoc network system. This system employs an air-to-ground joint networking architecture that ensures efficient information transmission, guaranteeing communication performance and reliability in scenarios with limited infrastructure. Through practical testing, the designed communication-computing-caching integrated air-to-ground collaborative ad hoc network system achieves singlehop air-to-ground transmission over 6.5 km, with delay controlled within 3 ms. Additionally, the system supports multi-hop information transmission, with a maximum communication range exceeding 30 km. Furthermore, by integrating edge computing with the 'store-carry-forward' mechanism, the system significantly enhances the mobile access capabilities and task processing abilities of users, further optimizing overall communication and task offloading performance.
AB - The use of communication modules mounted on uncrewed aerial vehicles (UAVs) to establish aerial base stations enables rapid and cost-effective network deployment, facilitates line-of-sight (LoS) transmission, and thereby provides higherquality communication services. The UAV-based air-to-ground collaborative ad hoc network, with its wide coverage and flexibility, is expected to play a crucial role in future cellular communications. Motivated by the above, we investigate networking technologies for air-to-ground collaborative mechanisms in highly dynamic, large-scale environments and design a communication-computing-caching integrated air-to-ground collaborative ad hoc network system. This system employs an air-to-ground joint networking architecture that ensures efficient information transmission, guaranteeing communication performance and reliability in scenarios with limited infrastructure. Through practical testing, the designed communication-computing-caching integrated air-to-ground collaborative ad hoc network system achieves singlehop air-to-ground transmission over 6.5 km, with delay controlled within 3 ms. Additionally, the system supports multi-hop information transmission, with a maximum communication range exceeding 30 km. Furthermore, by integrating edge computing with the 'store-carry-forward' mechanism, the system significantly enhances the mobile access capabilities and task processing abilities of users, further optimizing overall communication and task offloading performance.
KW - Ad hoc networks
KW - air-to-ground collaboration
KW - communication-computing-caching integration
UR - https://www.scopus.com/pages/publications/105017683926
U2 - 10.1109/ICCC65529.2025.11148960
DO - 10.1109/ICCC65529.2025.11148960
M3 - 会议稿件
AN - SCOPUS:105017683926
T3 - 2025 IEEE/CIC International Conference on Communications in China:Shaping the Future of Integrated Connectivity, ICCC 2025
BT - 2025 IEEE/CIC International Conference on Communications in China:Shaping the Future of Integrated Connectivity, ICCC 2025
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2025 IEEE/CIC International Conference on Communications in China, ICCC 2025
Y2 - 10 August 2025 through 13 August 2025
ER -