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Performance Analysis of the IEEE 802.11s PSM

机译:IEEE 802.11s PSM的性能分析

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With the introduction of IEEE 802.11 power save mode (PSM), a lot of work has been done to enhance the energy saving ability of the wireless nodes. The ultimate goal of the research is to make the networking equipment carbon neutral and prolong the lifetime of the energy limited device for various applications; in some cases it is a trade-off between energy efficiency and delay. However, few studies have been made until now in the area of IEEE 802.11s based link specific power mode. The essence of this method is the ability of a node to maintain different power modes with its different peer nodes at the same time. A new peer service period (PSP) mechanism is also proposed in IEEE 802.11s amendment for transmitting to a receiver operating in PSM. In this paper the performance of the link specific power mode is studied for a single- and a multilink network in terms of energy, delay throughput, and sleep duration. It is found that at small load the energy saving could be as high as eighty percent when compared with the active mode operation. A stochastic model, based on discrete time discrete state Markov chain, is developed for one peer link operation to study the system behavior closely during PSM operation.
机译:随着IEEE 802.11省电模式(PSM)的引入,已经做了很多工作来增强无线节点的节能能力。研究的最终目标是使网络设备碳中和,并延长能量受限设备在各种应用中的寿命。在某些情况下,需要在能源效率和延迟之间进行权衡。但是,到目前为止,在基于IEEE 802.11s的链路特定功率模式领域中,几乎没有进行任何研究。该方法的本质是节点同时与不同的对等节点保持不同功率模式的能力。在IEEE 802.11s修订中还提出了一种新的对等服务周期(PSP)机制,用于发送给在PSM中运行的接收器。在本文中,针对单链路和多链路网络在能量,延迟吞吐量和睡眠持续时间方面研究了链路特定功率模式的性能。发现在小负载下,与主动模式操作相比,节能可高达百分之八十。针对一个对等链路操作,建立了基于离散时间离散状态马尔可夫链的随机模型,以仔细研究PSM操作期间的系统行为。

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