DocumentCode :
2930378
Title :
Dynamic Optimal Fragmentation for Goodput Enhancement in WLANs
Author :
Chang, Yusun ; Lee, Chris ; Kwon, B. ; Copeland, John A.
Author_Institution :
Commun. Syst. Center, Atlanta
fYear :
2007
fDate :
21-23 May 2007
Firstpage :
1
Lastpage :
9
Abstract :
To meet the demand for broadband wireless communication, wireless systems should work well in typical wireless environments, characterized by the path loss of the signals, multipath fading, interference to adjacent channels, and random errors. IEEE 802.11 VVLANs use the unlicensed 2.4 GHz industrial, scientific and medical (ISM) band, which is vulnerable to noise generated by TVs, microwaves, and cordless phones. This paper proposes an algorithm to enhance system goodput through the dynamic optimal fragmentation. The number of contending stations, packet collisions, packet error probabilities, and fragmentation overheads are modeled in the analysis. Using an adaptive SNR estimator, the sender estimates the SNR of the receiver, and chooses a fragmentation threshold to shape arbitrary sized packets into optimal length packets. Through the rigorous analysis and extensive experiments with implemented test-bed, we show that the dynamic optimal fragmentation enhances the goodput approximately 18% in a typical WLAN environment. The experiment results reinforce that the algorithm is a comprehensive analytical model applicable to any CSMA/CA based MAC protocol for next generation wireless networks, and a realistic approach that can be deployed without changing the IEEE802.11 MAC protocol.
Keywords :
broadband networks; carrier sense multiple access; error statistics; fading channels; multipath channels; radiofrequency interference; wireless LAN; CSMA/CA; IEEE 802.11; MAC protocol; WLAN; adaptive SNR estimator; adjacent channels; broadband wireless communication; contending stations; dynamic optimal fragmentation; interference; multipath fading; packet collisions; packet error probability; random errors; scientific and medical band; signals path loss; wireless systems; Broadband communication; Fading; Interference; Media Access Protocol; Microwave generation; Noise generators; Signal to noise ratio; Wireless application protocol; Wireless communication; Working environment noise; 802.11; Fragmentation; Goodput;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Testbeds and Research Infrastructure for the Development of Networks and Communities, 2007. TridentCom 2007. 3rd International Conference on
Conference_Location :
Lake Buena Vista, FL
Print_ISBN :
978-1-4244-0739-2
Electronic_ISBN :
978-1-4244-0739-2
Type :
conf
DOI :
10.1109/TRIDENTCOM.2007.4444673
Filename :
4444673
Link To Document :
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