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Robust synchronization for IEEE 802.15.4 CSS wireless sensor networks

机译:IEEE 802.15.4 CSS无线传感器网络的鲁棒同步

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In a wireless network, synchronization accuracy can be significantly affected by impairments affecting the physical layer. It is well known that path delay asymmetry adversely affects timing protocols based on two-way message exchanges but, unfortunately, bounds to link asymmetry are hard to ensure when timing messages are exchanged through wireless links. It would then be desirable to be able to flag the corresponding timestamps as unreliable. This paper discusses the application of a timestamp validation approach in the synchronization of the nodes in a wireless network employing physical-level timestamping in a IEEE 802.15.4 Chirp Spread Spectrum. Because a Kalman filter is employed as a servo for the local clock, differences between the timestamp received through the network and the predicted local time can be compared to statistical thresholds referred to the Kalman filter innovation process. Thus, a detector decision rule can be successfully based on well-defined statistical criteria, as shown by experimental data presented in the paper.
机译:在无线网络中,通过影响物理层的损伤,可以显着影响同步精度。众所周知,路径延迟不对称基于双向消息交换不利地影响定时协议,但是,遗憾的是,在通过无线链路交换定时消息时,难以确保链路不对称的界限。然后希望能够将相应的时间戳标记为不可靠的。本文讨论了时间戳验证方法在IEEE 802.15.4 Chirp扩频频谱中使用物理级时间戳的无线网络中的节点的同步。因为卡尔曼滤波器被用作本地时钟的伺服,所以可以将通过网络接收的时间戳与预测的本地时间之间的差异与统计阈值进行比较,所以统计阈值被称为卡尔曼滤波器创新过程。因此,探测器决策规则可以基于明确定义的统计标准成功,如本文中所示的实验数据所示。

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