DocumentCode
2464057
Title
A design of a mobile WiMAX system for military applications and its performance in fading channels
Author
Park, Joon Ho ; Ban, Mingji ; Cho, Sung Ho
Author_Institution
Div. of Electr. & Comput. Eng., Hanyang Univ., Seoul
fYear
2008
fDate
6-9 Oct. 2008
Firstpage
185
Lastpage
188
Abstract
The IEEE 802.16e mobile WiMAX system may not be quite suitable in some applications where the uplink (UL) requires higher transmission rate than the downlink (DL). In particular, many cases in military applications often require higher transmission rate in the uplink. In this paper, we propose a new mobile WiMAX scheme that provides the DL to UL ratio (DUR) to be 9:33 by modify the frame structure. Fading channels for the modified mobile WiMAX system are presented. We evaluate the bit error rate (BER) performance and compare the throughput at the different DUR. The IEEE 802.16e mobile WiMAX system may not be quite suitable in some applications where the uplink (UL) requires higher transmission rate than the downlink (DL). In particular, many cases in military applications often require higher transmission rate in the uplink. In this paper, we propose a new mobile WiMAX scheme that provides the DL to UL ratio (DUR) to be 9:33 by modify the frame structure. Fading channels for the modified mobile WiMAX system are presented. We evaluate the bit error rate (BER) performance and compare the throughput at the different DUR.
Keywords
WiMax; error statistics; fading channels; military communication; mobile radio; BER performance; IEEE 802.16e mobile WiMAX system; bit error rate; fading channel; military applications; Application software; Bit error rate; Downlink; Fading; Internet; Military computing; Mobile communication; OFDM; Throughput; WiMAX;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Technologies for Communications, 2008. ATC 2008. International Conference on
Conference_Location
Hanoi
Print_ISBN
978-1-4244-2680-5
Electronic_ISBN
978-1-4244-2681-2
Type
conf
DOI
10.1109/ATC.2008.4760551
Filename
4760551
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