DocumentCode
429499
Title
Dynamic contention window selection scheme to achieve a theoretical throughput limit in wireless networks: a fuzzy reasoning approach
Author
Chen, Jenhui ; Wu, Wenchiao
Author_Institution
Dept. of Comput. Sci. & Inf. Eng., Chung Gung Univ., Taoyuan, Taiwan
Volume
5
fYear
2004
fDate
26-29 Sept. 2004
Firstpage
3196
Abstract
In WLANs, the IEEE 802.11 MAC protocol has been the main element that determines the efficiency of sharing the limited communication bandwidth. The performance of the protocol could be improved by using an appropriate tuning of the backoff algorithm to approach a theoretical throughput limit. However, in real cases, a mobile node would not exactly know the network and load configuration information (e.g., number of active nodes). Hence, in this paper, we propose a novel and efficient selection of backoff window size mechanism using a fuzzy reasoning approach, named the fuzzy backoff controller (FBC), to achieve the system throughput limit. This mechanism is developed on the following ideas: by observing the busy degree of the medium and the number of neighbors, the proposed FBC could generate a proper backoff window thus reduce the probability of collisions and enhance the throughput. The obtained simulation results show that the proposed FBC not only significantly improves the performance of the protocol but also achieves good fairness of accessing the medium between nodes.
Keywords
access protocols; fuzzy control; fuzzy reasoning; mobile radio; telecommunication congestion control; wireless LAN; IEEE 802.11 MAC protocol; WLAN; active node number; backoff algorithm tuning; bandwidth sharing efficiency; collision probability reduction; dynamic contention window size selection scheme; fuzzy backoff controller; fuzzy reasoning; load configuration; medium access fairness; mobile node; theoretical throughput limit; wireless channel limited communication bandwidth; Bandwidth; Control systems; Fuzzy control; Fuzzy reasoning; Fuzzy systems; Media Access Protocol; Mobile communication; Size control; Throughput; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicular Technology Conference, 2004. VTC2004-Fall. 2004 IEEE 60th
ISSN
1090-3038
Print_ISBN
0-7803-8521-7
Type
conf
DOI
10.1109/VETECF.2004.1404651
Filename
1404651
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