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ADAPTIVE POWER MANAGEMENT FOR IEEE 802.11-BASED AD HOC NETWORKS

机译:基于IEEE 802.11的AD HOC网络的自适应电源管理

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Mobile stations are powered by batteries which have a limited lifetime. Therefore, it is important to reduce the power consumption. In IEEE 802.11 power saving mode, a station can enter a doze state so that it can save its energy. However, a station must be either in awake state or doze state during a beacon interval and a station unnecessarily consumes more energy or suffers from longer delay in forwarding data frames. We proposes an adaptive scheme which adjusts the number of awake times during one beacon interval to reduce power consumption and forwarding delay. Simulation study show that the proposed scheme reduces energy consumption by 30~50% compared to the standard power management method, with comparable throughput and delay.
机译:移动站由使用寿命有限的电池供电。因此,降低功耗很重要。在IEEE 802.11省电模式下,工作站可以进入休眠状态,从而可以节省能量。但是,在信标间隔期间,站点必须处于唤醒状态或休眠状态,并且站点不必要地消耗更多能量或在转发数据帧时遭受更长的延迟。我们提出了一种自适应方案,该方案可在一个信标间隔内调整唤醒次数,以减少功耗和转发延迟。仿真研究表明,与标准的电源管理方法相比,该方案可将能耗降低30〜50%,吞吐量和延迟可比。

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