[1]
G. Araniti,A. lera and A. Molinaro. The role of HAPs in suporting multimedia broadcast and multicast services in terrestrial-satellite integrated system. Wireless Personal Communications, vol. 32, pp.195-213, (2005).
DOI: 10.1007/s11277-005-0742-3
Google Scholar
[2]
E, Falletti,M. Laddomada,M. Mondin, et al. Integrated services from high-altitude platforms: a flexible communication system. IEEE Communications Magazine, pp.124-132, Februuary (2006).
DOI: 10.1109/mcom.2006.1593555
Google Scholar
[3]
Song Liu, Zhisheng Niu, Youshou Wu. A Blockage based Channel Model for High Altitude Platform Communications. Vehicular Technology Conference, 2003, vol. 2, pp.1051-1055.
DOI: 10.1109/vetecs.2003.1207787
Google Scholar
[4]
Shimam oto S, Miko shiba T , T akakusag i S, et al. Performance evaluation of communications systems employing HAP-based aircrafts and LEO satellites . IEICE Transactions on Communications, 1998, E81-B( 12) , pp.2343-2350.
Google Scholar
[5]
D. Grace, M. Capstick, M. Mohorcic, et al. Integrating users into the wider broadband network via high altitude platforms. IEEE Wireless Communications, October 2005: 98-105.
DOI: 10.1109/mwc.2005.1522112
Google Scholar
[6]
Romeo Giuliano, Michele Luglio, and Franco Mazzenga. Interoperability between WiMAX and Broadband Mobile Space Networks. IEEE Communications Magazine , March 2008: 50-57.
DOI: 10.1109/mcom.2008.4463771
Google Scholar
[7]
Miha Smolnikar, Tomaz Javornik, Mihael Mohorcic Channel Decoder Assisted Adaptive Coding and Modulation for HAP Communications. 2007 IEEE: 1375-1379.
DOI: 10.1109/vetecs.2007.288
Google Scholar