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Adaptive Access Mechanism Based on Network State Detection in Multi-rate IEEE802.11 WLANs

机译:基于网络状态检测的多速IEEE802.11 WLAN的自适应访问机制

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This paper addresses the problem of channel access in multi-rates IEEE802.11 WLANs(Wireless Local Area Networks). Unlike some current solutions for performance anomaly only aiming to the saturated network, we propose a fine-grain channel access mechanism that takes the saturated and unsaturated network into account simultaneously. Meanwhile, we present a model to detect the network state under different network density. This novel framework can detect the network state by collision rate for the dynamic network scenarios and perform more efficient channel access by combining the legacy IEEE802.11 DCF(Distributed Coordination Function)and airtime fairness algorithm. The simulations show that our algorithm can improve the aggregate throughput and reduce the collision rate during channel access compared to the legacy DCF mechanism.
机译:本文讨论了多率IEEE802.11 WLAN(无线局域网)中的频道访问问题。与仅旨在瞄准饱和网络的性能异常的一些目前的解决方案不同,我们提出了一种微粒通道访问机制,其同时考虑饱和和不饱和网络。同时,我们提出了一种在不同网络密度下检测网络状态的模型。这种新颖的框架可以通过动态网络场景的冲突速率来检测网络状态,并通过组合传统IEEE802.11 DCF(分布式协调功能)和通话时间公平算法来执行更有效的频道访问。模拟表明,与传统DCF机制相比,我们的算法可以提高频道吞吐量并降低通道访问期间的冲突速率。

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