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Self-Synchronization in Duty-Cycled Internet of Things (IoT) Applications

机译:占空比物联网(IoT)应用程序中的自同步

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摘要

In recent years, the networks of low-power devices have gained popularity. Typically, these devices are wireless and interact to form large networks such as the machine to machine networks, Internet of Things, wearable computing, and wireless sensor networks. The collaboration among these devices is a key to achieving the full potential of these networks. A major problem in this field is to guarantee robust communication between elements while keeping the whole network energy efficient. In this paper, we introduce an extended and improved emergent broadcast slot (EBS) scheme, which facilitates collaboration for robust communication and is energy efficient. In the EBS, nodes communication unit remains in sleeping mode and are awake just to communicate. The EBS scheme is fully decentralized, that is, nodes coordinate their wake-up window in a partially overlapped manner within each duty-cycle to avoid message collisions. We show the theoretical convergence behavior of the scheme, which is confirmed through real test-bed experimentation.
机译:近年来,低功率设备的网络已经普及。通常,这些设备是无线的,可以交互形成大型网络,例如机器对机器网络,物联网,可穿戴计算和无线传感器网络。这些设备之间的协作是实现这些网络的全部潜力的关键。该领域的主要问题是在确保整个网络能源效率的同时,确保元素之间的健壮通信。在本文中,我们介绍了一种扩展和改进的紧急广播时隙(EBS)方案,该方案可促进协作以实现健壮的通信并且具有高能效。在EBS中,节点通信单元保持睡眠模式,并且醒来只是为了通信。 EBS方案是完全分散的,也就是说,节点在每个占空比内以部分重叠的方式协调其唤醒窗口,以避免消息冲突。我们展示了该方案的理论收敛行为,这已通过实际的试验台实验得到了证实。

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