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Modeling Queueing and Channel Access Delay in Unsaturated IEEE 802.11 Random Access MAC Based Wireless Networks

机译:基于不饱和IEEE 802.11随机访问MAC的无线网络中的排队和信道访问延迟建模

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In this paper, we present an analytic model for evaluating the queueing delays and channel access times at nodes in wireless networks using the IEEE 802.11 Distributed Coordination Function (DCF) as the MAC protocol. The model can account for arbitrary arrival patterns, packet size distributions and number of nodes. Our model gives closed form expressions for obtaining the delay and queue length characteristics and models each node as a discrete time $G/G/1$ queue. The service time distribution for the queues is derived by accounting for a number of factors including the channel access delay due to the shared medium, impact of packet collisions, the resulting backoffs as well as the packet size distribution. The model is also extended for ongoing proposals under consideration for 802.11e wherein a number of packets may be transmitted in a burst once the channel is accessed. Our analytical results are verified through extensive simulations. The results of our model can also be used for providing probabilistic quality of service guarantees and determining the number of nodes that can be accommodated while satisfying a given delay constraint.
机译:在本文中,我们提出了一种解析模型,用于评估使用IEEE 802.11分布式协调功能(DCF)作为MAC协议的无线网络中节点的排队延迟和信道访问时间。该模型可以考虑任意到达模式,数据包大小分布和节点数。我们的模型给出了用于获取延迟和队列长度特征的封闭式表达式,并将每个节点建模为离散时间$ G / G / 1 $队列。队列的服务时间分布是通过考虑许多因素得出的,这些因素包括由于共享介质导致的信道访问延迟,数据包冲突的影响,产生的退避以及数据包大小分布。该模型还针对正在考虑802.11e的提议进行了扩展,其中,一旦访问信道,就可以突发发送多个数据包。我们的分析结果通过广泛的模拟得到了验证。我们模型的结果还可用于提供概率的服务质量保证,并确定在满足给定延迟约束的情况下可容纳的节点数。

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