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Performance Evaluation of Power Save Protocols Using Carrier Sensing in Multihop Ad Hoc Networks

机译:乘法送载乘法乘法临时网络的省电协议的性能评估

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Extending system lifetime by effectively managing power on participating nodes is critical in wireless ad hoc networks. Recent work has shown that, by appropriately powering off nodes, energy may be significantly saved. The IEEE 802.11 protocol specifies a simple power save mechanism (PSM) to conserve energy. Data frames are advertised during a fixed period of time, known as an ATIM window, at epochs known as beacon intervals. However, the announcement traffic puts a heavy constraint on the size of both the ATIM period and the beacon interval and consequently on throughput, end to end delay and power saving. In this paper, we address this problem by proposing the use of carrier sensing during the ATIM window to reduce the number of exchanged announcement frames. Carrier sensing is used as an energy efficient method to let nodes know if their neighbors are Awake. We propose two new protocols (the BTA-PSM and the UTA-PSM), derived from the PSM. These protocols try to enhance PSM's performances by inferring from the already advertised future behaviors of the neighboring nodes of a given mobile station. Simulation results testified to the superiority of BTA-PSM and UTA-PSM over PSM and the Dynamic Carrier Sense PSM (DCS-PSM) in ensuring greater power saving, higher throughput and lower delay.
机译:通过有效地管理参与节点的电源在无线ad Hoc网络上延伸系统寿命。最近的工作表明,通过适当地关闭节点,可以显着地保存能量。 IEEE 802.11协议指定一个简单的省电机制(PSM)以节省能量。数据帧在已知为信标间隔的时期的固定时间段内宣传,称为ATIM窗口。但是,公告流量对ATIM周期和信标间隔的大小并因此对吞吐量进行了巨大约束,并结束了最终延迟和省电。在本文中,我们通过提出在ATIM窗口期间使用载波传感来解决这个问题,以减少交换公告帧的数量。载波传感用作节能方法,以让节点知道他们的邻居是否唤醒。我们提出了两种新的协议(BTA-PSM和UTA-PSM),来自PSM。这些协议尝试通过从给定移动台的相邻节点的已经广告的未来行为推断来提高PSM的性能。仿真结果证明了BTA-PSM和UTA-PSM过度PSM和动态载波检测PSM(DCS-PSM)的优越性,确保更大的省电,较高的吞吐量和较低延迟。

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