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A Synchronous TDMA Ultrasonic TOF Measurement System for Low-Power Wireless Sensor Networks

机译:用于低功率无线传感器网络的同步TDMA超声波TOF测量系统

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This paper presents the design and evaluation of an ultrasonic time-of-flight (TOF) measurement system in the context of a smart sensor wireless network. In particular, the ZigBee protocol is used for data transmission and synchronization purposes. Low-cost and low-power restrictions are taken into account in the design. A synchronous measurement scheduling approach is used to minimize the network traffic and, therefore, the power consumption, while avoiding the need of wired connections between the nodes or the use of specific radio link to provide synchronization. A theoretical model that describes the accuracy of the proposed system is derived. This model takes into account both clock drift effects and finite clock resolution of the network nodes. According to the model, the estimation of the TOF is biased due to the clock drifts, and a solution is proposed to compensate this bias. The compensation is based on an accurate estimation that each node performs for its own clock drift. An error analysis of this estimation procedure is also developed, and its effects on the TOF accuracy are presented. A theoretical model of the system that predicts the system performance in terms of TOF accuracies is proposed. An implementation of the TOF measurement system is presented, from which experimental results that validate the theoretical derivations and the effect of the clock drift compensation are obtained. Experimental evaluation of the system also demonstrates that TOF accuracies better than 2 μs are achievable, which will be more than adequate for achieving subcentimetric or even submillimetric precisions in ultrasound-TOF-based distance measurement systems. Even though a particular approach for TOF estimation is considered in this work, most of the derived results are also applicable to other systems involving time synchronous measurements.
机译:本文介绍了在智能传感器无线网络环境下超声飞行时间(TOF)测量系统的设计和评估。特别是,ZigBee协议用于数据传输和同步目的。设计中考虑了低成本和低功耗的限制。同步测量调度方法用于最大程度地减少网络流量,从而最大程度地降低功耗,同时避免了节点之间需要有线连接或使用特定无线电链路来提供同步的需求。得出了描述所提出系统准确性的理论模型。该模型同时考虑了时钟漂移效应和网络节点的有限时钟分辨率。根据该模型,TOF的估计由于时钟漂移而产生偏差,并提出了一种解决方案来补偿该偏差。该补偿基于每个节点针对其自己的时钟漂移执行的准确估计。还对该估计程序进行了误差分析,并提出了其对TOF精度的影响。提出了一种基于TOF精度预测系统性能的系统理论模型。提出了TOF测量系统的实现,从中获得了验证理论推导和时钟漂移补偿效果的实验结果。该系统的实验评估还表明,TOF精度可以达到2μs以上,这对于在基于超声TOF的距离测量系统中实现亚厘米级或什至亚毫米级的精度将绰绰有余。即使在这项工作中考虑了一种特殊的TOF估计方法,大多数导出结果也适用于其他涉及时间同步测量的系统。

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