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首页> 外文期刊>IEEE transactions on mobile computing >Bird-MAC: Energy-Efficient MAC for Quasi-Periodic IoT Applications by Avoiding Early Wake-up
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Bird-MAC: Energy-Efficient MAC for Quasi-Periodic IoT Applications by Avoiding Early Wake-up

机译:Bird-MAC:通过避免过早唤醒来实现准周期物联网应用的节能MAC

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We propose a new MAC protocol for IoT applications, called Bird-MAC, which is highly energy efficient in the applications where IoT sensors report monitoring status in a quasi-periodic manner, as in structural health monitoring and static environmental monitoring. Two key design ideas of Bird-MAC are: (a) no need of early-wake-up of transmitters and (b) taking the right balance between synchronization and coordination costs. The idea (a) is possible by allowing a node (whether it is a transmitter or receiver) to wake up just with its given wake-up schedule, and letting a late bird (which wakes up later) notify its wake-up status to its corresponding early bird (which wakes up earlier), where the early bird just infrequently waits for the late bird's wake-up signal. The idea (b) is realized by designing Bird-MAC to be placed in a scheme between purely synchronous and asynchronous schemes. We provide a rigorous mathematical analysis that is used to choose the right protocol parameters of Bird-MAC. We demonstrate the performance of Bird-MAC through extensive simulations, and real experiments. The experiment on our testbed using a 26 node testbed at an underground parking lot of our office building to monitor its structural health shows that energy consumption is reduced by about up to 45 percent over existing sensor MAC protocols. We also confirm the applicability of Bird-MAC in a challenging and realistic scenario through the experiment on Yeongjong Grand Bridge in South Korea.
机译:我们为物联网应用提出了一种新的MAC协议,称为Bird-MAC,它在物联网传感器以准周期方式报告监视状态的应用(如结构健康监视和静态环境监视)中具有很高的能效。 Bird-MAC的两个关键设计思想是:(a)无需及早唤醒发射机;(b)在同步和协调成本之间取得适当的平衡。通过允许节点(无论是发送器还是接收器)仅按照其给定的唤醒时间表唤醒,然后让延迟的鸟(稍后唤醒)将其唤醒状态通知给(a)的想法,其相应的早起鸟(早起),其中早起鸟很少等待晚起鸟的唤醒信号。想法(b)是通过将Bird-MAC设计为放置在纯同步和异步方案之间的方案中来实现的。我们提供了严格的数学分析,用于选择Bird-MAC的正确协议参数。我们通过广泛的仿真和实际实验演示了Bird-MAC的性能。在我们办公楼的地下停车场中使用26个节点的测试台进行测试的实验台上,通过监控其结构健康状况,该实验表明,与现有的传感器MAC协议相比,能耗降低了约45%。通过在韩国永宗大桥上进行的实验,我们还确认了Bird-MAC在具有挑战性和现实情况下的适用性。

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