DocumentCode :
2731704
Title :
Performance & capacity of mobile broadband WiMAX (802.16e) deployed via High Altitude Platform
Author :
Imran, Ali ; Tafazolli, Rahim
Author_Institution :
Centre of Commun. Syst. Res., Univ. of Surrey, Guildford, UK
fYear :
2009
fDate :
17-20 May 2009
Firstpage :
319
Lastpage :
323
Abstract :
This paper investigates the performance and capacity of a WiMAX 802.16e cellular system deployed via High Altitude Platform (HAP WiMAX) through extensive simulations. HAP WiMAX link performance is evaluated for a wide range of channel conditions in terms of elevation angle and signal to noise ratio (SNR) through a comprehensive link level simulator based on 802.16e. The obtained results are then used to investigate HAP WiMAX cellular system performance in terms of user capacity, cell throughput and Grade of Service (GoS) by modelling a multi cellular scenario. The performance is evaluated for frequency reuse of 1 and 3 with and without Adaptive Coding and Modulations (ACM) for two different user data rates. Simulation results show that, cell throughputs as high as 3.6 Mbps per cell can be achieved for 5MHz channel bandwidth while attaining an acceptable GoS with a minimum frequency reuse of 3 in a HAP WiMAX 802.16e system.
Keywords :
WiMax; adaptive codes; adaptive modulation; cellular radio; channel allocation; high altitude stratospheric platforms; HAP WiMAX cellular system; WiMAX 802.16e cellular system; adaptive coding and modulations; channel bandwidth; channel conditions; elevation angle; frequency reuse; grade of service; high altitude platform; link level simulator; mobile broadband WiMAX 802.16e; signal to noise ratio; Cellular networks; Frequency; Interference; Laser sintering; Performance analysis; Satellites; Shadow mapping; Signal to noise ratio; Throughput; WiMAX; Capacity; HAP; Performance; WiMAX;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Conference, 2009. EW 2009. European
Conference_Location :
Aalborg
Print_ISBN :
978-1-4244-5935-3
Type :
conf
DOI :
10.1109/EW.2009.5357976
Filename :
5357976
Link To Document :
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