Delay analysis of IEEE 802.11 in single-hop networks

Marcelo M. Carvalho, J. Garcia-Luna-Aceves
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引用次数: 273

Abstract

This paper presents an analytical model to compute the average service time and jitter experienced by a packet when transmitted in a saturated IEEE 802.11 ad hoc network. In contrast to traditional work in the literature, in which a distribution is usually fitted or assumed, we use a bottom-up approach and build the first two moments of the service time based on the IEEE 802.11 binary exponential backoff algorithm and the events underneath its operation. Our model is general enough to be applied to any type of IEEE 802.11 wireless ad hoc network where the channel state probabilities driving a node's backoff operation are known. We apply our model to saturated single-hop ad hoc networks under ideal channel conditions. We validate our model through extensive simulations and conduct a performance evaluation of a node's average service time and jitter for both direct sequence and frequency-hopping spread spectrum physical layers.
IEEE 802.11在单跳网络中的时延分析
本文提出了一个分析模型来计算一个数据包在饱和IEEE 802.11自组织网络中传输时所经历的平均服务时间和抖动。与文献中通常拟合或假设分布的传统工作相反,我们使用自下而上的方法,并基于IEEE 802.11二进制指数回退算法及其操作下的事件构建服务时间的前两个时刻。我们的模型具有足够的通用性,可以应用于任何类型的IEEE 802.11无线自组织网络,其中驱动节点后退操作的信道状态概率是已知的。我们将模型应用于理想信道条件下的饱和单跳自组织网络。我们通过广泛的仿真验证了我们的模型,并对节点在直接序列和跳频扩频物理层的平均服务时间和抖动进行了性能评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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