A collision-aware backoff mechanism for IEEE 802.11 WLANs
Yi-Cheng Chan, Ming-Chun Liao, Ching-Hsiang Chu
Abstract
Yi-Cheng Chan, Ming-Chun Liao, Ching-Hsiang Chu
Abstract
The distributed coordination function (DCF) is the most widely deployed medium access control (MAC) protocol for IEEE 802.11 WLANs. It is a carrier sense multiple access with collision avoidance (CSMA/CA) scheme which employs a binary exponential backoff (BEB) algorithm to reduce the collision probability. In this paper we propose a novel backoff algorithm, collision-aware backoff mechanism (CABM), which can dynamically select a suitable contention window size according to the contention level of current network. A contention level is separately estimated by each station depending on unsuccessful frame transmission ratios. Simulation results show that our scheme outperforms the standard protocol in terms of the collision probability and system throughput, especially when the number of contending stations is large.
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The distributed coordination function (DCF) is the most widely deployed medium access control (MAC) protocol for IEEE 802.11 WLANs. It is a carrier sense multiple access with collision avoidance (CSMA/CA) scheme which employs a binary exponential backoff (BEB) algorithm to reduce the collision probability. In this paper we propose a novel backoff algorithm, collision-aware backoff mechanism (CABM), which can dynamically select a suitable contention window size according to the contention level of current network. A contention level is separately estimated by each station depending on unsuccessful frame transmission ratios. Simulation results show that our scheme outperforms the standard protocol in terms of the collision probability and system throughput, especially when the number of contending stations is large.
Key concepts: Exponential backoff, Distributed coordination function, Computer science, Carrier sense multiple access with collision avoidance, Computer network, Multiple Access with Collision Avoidance for Wireless, Throughput, Collision