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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Clock Synchronization in Wireless Sensor Networks: Analysis and Design of Error Precision Based on Lossy Networked Control Perspective
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Clock Synchronization in Wireless Sensor Networks: Analysis and Design of Error Precision Based on Lossy Networked Control Perspective

机译:无线传感器网络中的时钟同步:基于有损网络控制视角的误差精度分析与设计

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Motivated by the importance of the clock synchronization in wireless sensor networks (WSNs), due to the packet loss, the synchronization error variance is a random variable and may exceed the designed boundary of the synchronization variance. Based on the clock synchronization state space model, this paper establishes the model of synchronization error variance analysis and design issues. In the analysis issue, assuming sensor nodes exchange clock information in the network with packet loss, we find a minimum clock information packet arrival rate in order to guarantee the synchronization precision at synchronization node. In the design issue, assuming sensor node freely schedules whether to send the clock information, we look for an optimal clock information exchange rate between synchronization node and reference node which offers the optimal tradeoff between energy consumption and synchronization precision at synchronization node. Finally, simulations further verify the validity of clock synchronization analysis and design from the perspective of synchronization error variance.
机译:由于数据包丢失,由于时钟同步在无线传感器网络(WSN)中的重要性,因此同步误差方差是一个随机变量,可能会超出同步方差的设计范围。基于时钟同步状态空间模型,建立了同步误差方差分析模型和设计问题。在分析问题中,假设传感器节点在网络中以丢包方式交换时钟信息,我们将找到一个最小的时钟信息包到达率,以保证同步节点的同步精度。在设计问题中,假设传感器节点自由调度是否发送时钟信息,我们将在同步节点和参考节点之间寻找最佳时钟信息交换速率,从而在同步节点的能耗和同步精度之间实现最佳折衷。最后,仿真从同步误差方差的角度进一步验证了时钟同步分析和设计的有效性。

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