DocumentCode :
2624725
Title :
Performance evaluation of Mesh-based mobile WiMax PHY baseband for above the sea propagation
Author :
Tie, Lok Tiing ; Wu, Yan ; Yar, Kar Peo ; Wong, Sai Ho ; Shankar, Jaya ; Win, Htun Htun
Author_Institution :
Inst. for Infocomm Res., Singapore, Singapore
fYear :
2010
fDate :
12-15 April 2010
Firstpage :
83
Lastpage :
87
Abstract :
In this paper, the performance evaluation of the Mesh-based PHY of IEEE 802.16e standard (a.k.a Mobile WiMax) for above the sea propagation is presented. For a Mesh OFDM system, the independent bursts transmission among different communicating nodes compels the receiving nodes to perform frame locking using the preamble with size of only one OFDM symbol interval, short preamble length is used in favour to good throughput rate. One-frame locking posts extra challenge to the hardware because dynamic and accurate synchronization algorithm is necessary. However, we used pulse-per-second (PPS) signal synchronization from Global Positioning System (GPS) to bring down the pulse-per-millions (ppm) error from 30 to 0.01 once course frame synchronization is achieved. We have proposed the modified preamble structure to perform timing synchronization. Next, the pilot tones within OFDM sub-carriers coupled with the linear interpolated channel estimation algorithm bring the phase error further down to give fairly good performance for OFDM system which is catered for Doppler fading criteria of up to relative speed 120km/h created by moving ships.
Keywords :
Global Positioning System; IEEE standards; OFDM modulation; WiMax; channel estimation; fading channels; mobile communication; synchronisation; Doppler fading; GPS; Global Positioning System; IEEE 802.16e standard; Mobile WiMax; OFDM sub-carriers; OFDM symbol interval; accurate synchronization algorithm; dynamic synchronization algorithm; linear interpolated channel estimation algorithm; mesh OFDM system; mesh-based mobile WiMax PHY baseband; one-frame locking; performance evaluation; pulse-per-second signal synchronization; sea propagation; Baseband; Channel estimation; Fading; Global Positioning System; Hardware; OFDM; Physical layer; Throughput; Timing; WiMAX; Mesh; OFDM; WiMax; ship-to-ship communications;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Conference (EW), 2010 European
Conference_Location :
Lucca
Print_ISBN :
978-1-4244-5999-5
Type :
conf
DOI :
10.1109/EW.2010.5483398
Filename :
5483398
Link To Document :
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