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Achieving Efficiency Channel Utilization and Weighted Fairness in IEEE 802.11 WLANs with a P-Persistent Enhanced DCF

机译:使用P-PertiStent增强DCF实现IEEE 802.11 WLAN中的效率信道利用率和加权公平性

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摘要

Fair allocation of bandwidth and maximization of channel utilization are two important issues when designing a contention-based wireless medium access control (MAC) protocol. However, fulfilling both design goals at the same time is very difficult. Considering the problem in the IEEE 802.11 wireless local area networks (WLANs), in this work we propose a method using a p-persistent enhanced DCF, called P-IEEE 802.11 DCF, to achieve the weighted fairness among multiple priority classes in a WLAN. The key idea of this method is that when the back-off timer of a node reaches zero, the transmission probability is properly controlled to reflect the relative weights among data traffic flows so as to maximize the aggregate throughput and to minimize the frame delay at the same time. In particular, we obtain the optimal transmission probability based on a theoretical analysis, and also provide an approximation to this probability. The derived optimal and approximation are all evaluated numerically and simulated with different scenarios. The results show that the proposed method can fulfill our design goals under different numbers of priority classes and different numbers of hosts.
机译:在设计基于竞争的无线介质访问控制(MAC)协议时,通道利用率的公平分配是渠道利用的两个重要问题。但是,同时满足设计目标是非常困难的。考虑到IEEE 802.11无线局域网(WLAN)中的问题,在该工作中,我们提出了一种使用称为P-IEEE 802.11 DCF的P-Pertibtent增强DCF的方法,以实现WLAN中的多个优先级类之间的加权公平性。该方法的关键思想是,当节点的退避计时器达到零时,正确地控制传输概率以反映数据流量流之间的相对权重,以便最大化聚合吞吐量并最小化帧延迟同时。特别地,我们基于理论分析获得最佳传输概率,并且还提供对该概率的近似。派生的最佳和近似全部在数字上进行评估,并用不同的场景进行模拟。结果表明,该方法可以在不同数量的优先级和不同数量的主机下满足我们的设计目标。

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