A very high frequency(VHF)aeronautical Ad hoc network(AANET)is introduced to study problems in the existing aeronautical telecommunication network
such as aircrafts can not be communicated with each other and can not be connected to Internet
etc. The feasibility of AANET is studied in the airspace of the mainland of China. An analytical expression for the network probability is derived based on a calculated aircraft communication radius and the Poisson distribution. Then
the probability and connectivity of the network are simulated using the information of the scheduled flights from all airline companies in China. The results show that from 8 a.m. to 24 p.m.
AANET is feasible in both the Eastern and Western airspaces of China; when 3 ground stations with communication radius of 500 km are located in Beijing
Shanghai and Guangzhou
respectively
and the aircraft communication radius is 500 km
the network connectivity maintains almost 100% from 8 a.m. to 24 p.m.
and that the average percentage of all aircrafts reaching one ground station during one day's flight duration exceeds 99%.
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references
KARRAS K, KYRITSIS T, AMIRFEIZ M, et al. Aeronautical mobile Ad hoc networks [C]∥Proceedings of 14th European Wireless Conference. Piscataway, NJ, USA: IEEE, 2008: 3972-3977.
ZHENG Bo, ZHANG Hengyang, HUANG Guoce, et al. Status and development of aeronautical Ad hoc networks [J]. Telecommunications Science, 2011,27(5):38-47.
CHENG M X, ZHAO Yiyuan. Connectivity of Ad hoc networks for advanced air traffic management [J]. Journal of Aerospace Computing, Information, and Communication, 2004, 1(5): 225-238.
TU H D, SHIMAMOTO S. A proposal of relaying data in aeronautical communication for oceanic flight routes employing mobile Ad-hoc network [C]∥Proceedings of 2009 First Asian Conference on Intelligent Information and Database Systems. Piscataway, NJ, USA: IEEE, 2009: 436-441.
SAKHAEE E, JAMALIPOUR A. The global in-flight Internet [J]. IEEE Journal on Selected Areas in Communications, 2006, 24(9): 1748-1757.
MEDINA D, HOFFMANN F, AYAZ S, et al. Feasibility of an aeronautical mobile Ad hoc network over the North Atlantic Corridor [C]∥Proceedings of IEEE SECON. Piscataway, NJ, USA: IEEE, 2008: 109-116.
SAKHAEE E, JAMALIPOUR A, KATO N. Aeronautical Ad hoc networks [C]∥Proceedings of the IEEE Wireless Communications Networking Conference. Piscataway, NJ, USA: IEEE, 2006: 246-251.
SCHNELL M, SCALISE S. NEWSKY: a concept for networking the sky for civil aeronautical communications [J]. Space Communications, 2008, 21(3/4): 157-166.
ROHRER J P, JABBAR A, CETINKAYA E K, et al. Airborne telemetry networks: challenges and solutions in the ANTP suite [C]∥Proceedings of IEEE Military Communications Conference. Piscataway, NJ, USA: IEEE, 2010: 74-79.
ROHRER J P, JABBAR A, CETINKAYA E K, et al. Highly-dynamic cross-layered aeronautical network architecture [EB/OL].(2010-09-10)[2010-12-21]. http:∥www.ittc.ku.edu/resilients/papers/Rohrer-Jabbar-Cetinkaya-Perrins-Sterbenz-2010.pdf.
SEO D W, KIM S H, SUH Y J. System integration of GPSR and ADS-B for aeronautical Ad hoc networks [C]∥Proceedings of IEEE Military Communications Conference. Piscataway, NJ, USA: IEEE, 2008: 1-6.
刘慧, 张军. 高动态自适应移动网络模型及其性能分析 [J]. 中国科学: E 信息科学, 2008, 38(2): 267-277.
LIU Hui, ZHANG Jun. Highly dynamic self-adaptive mobility model and analysis of its performance [J]. Science in China: Series E Information Sciences, 2008, 38(2): 267-277.
CHEN Zhuo, LIU Kai, ZHANG Jun. Study on a novel location-based routing algorithm [J]. Acta Aeronautica Et Astronautica Sinica, 2007, 28(4): 901-906.
MEDINA D, HOFFMANN F, AYAZ S, et al. Topology characterization of high density airspace aeronautical Ad hoc networks [C]∥Proceedings of 5 th IEEE International Conference on Mobile Ad Hoc and Sensor Systems. Piscataway, NJ, USA: IEEE, 2008: 295-304.
KINGSBURY R W. Mobile Ad hoc networks for oceanic aircraft communications [D]. Cambridge, MA, USA: Massachusetts Institute of Technology, 2009.
BESSE F, GARCIA F, PIROVANO A. Wireless Ad hoc networks access for aeronautical communications [C]∥Proceedings of 28th AIAA International Communications Satellite Systems Conference. Reston, VA, USA: AIAA, 2010: 1-15.
HAYKIN S, MOHER M. Modern wireless communications [M]. Upper Saddle River, NJ, USA: Prentice-Hall, 2004.