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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >External Gradient Time Synchronization in Wireless Sensor Networks
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External Gradient Time Synchronization in Wireless Sensor Networks

机译:无线传感器网络中的外部梯度时间同步

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Synchronization to an external time source such as Coordinated Universal Time (UTC), i.e., external synchronization, while preserving tight synchronization among neighboring sensor nodes may be crucial for applications such as determining the speed of a moving object in wireless sensor networks. However, existing time synchronization protocols in the literature, which can be used for external synchronization, poorly synchronize neighboring nodes. On the other hand, the only protocol that aims at optimizing the synchronization error between neighboring nodes is lack of a mechanism which synchronizes sensor nodes to a reference node, and hence, it cannot provide external synchronization. Therefore, there is a lack in the literature of a time synchronization protocol, which can be used by applications demanding both external synchronization and tight synchronization among neighboring nodes. In this paper, we answer the question of whether it is possible for sensor nodes to synchronize to a reference node while they optimize the clock skew between their neighboring nodes at the same time. Within this context, we present a novel time synchronization protocol, namely External Gradient Time Synchronization Protocol (EGSync). In EGSync, each sensor node synchronizes to a reference node by using time information flooded by this node, as well as synchronizes to its neighboring nodes by employing the agreement algorithm. We implemented EGSync on the MICAz platform using TinyOS and evaluated it on a testbed setup including 20 sensor nodes. We present the experimental results on our testbed and the simulation results for networks with larger diameters and densities.
机译:与外部时间源(例如协调世界时(UTC))的同步,即外部同步,同时保持相邻传感器节点之间的紧密同步,对于诸如确定无线传感器网络中移动物体的速度之类的应用而言可能至关重要。但是,现有文献中可用于外部同步的时间同步协议同步邻居节点的能力很差。另一方面,旨在优化相邻节点之间的同步误差的唯一协议缺乏将传感器节点与参考节点同步的机制,因此无法提供外部同步。因此,在文献中缺少时间同步协议,该协议可以被需要外部同步和相邻节点之间的紧密同步的应用程序使用。在本文中,我们回答以下问题:传感器节点是否有可能与参考节点同步,同时它们同时优化其相邻节点之间的时钟偏移。在此背景下,我们提出了一种新颖的时间同步协议,即外部梯度时间同步协议(EGSync)。在EGSync中,每个传感器节点都使用该节点充斥的时间信息与参考节点同步,并通过采用协议算法与其相邻节点同步。我们使用TinyOS在MICAz平台上实现了EGSync,并在包含20个传感器节点的测试平台上对其进行了评估。我们在试验台上展示了​​实验结果,并给出了具有较大直径和密度的网络的仿真结果。

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