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Low Complexity UWB Radios for Precise Wireless Sensor Network Synchronization

机译:低复杂度的UWB无线电,可实现精确的无线传感器网络同步

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Wireless sensor networks are becoming widely diffused because of the flexibility and scalability they offer. However, distributed measurements are significant only if the readout is coupled to time information. For this reason, network-wide time synchronization is the main concern. The objective of this paper is to exploit a very simple hardware implementation of an IR-UWB radio for realizing an accurate synchronization system for wireless sensors. The proposed solution relies on commercial-off-the-shelf discrete electronic components (rather than on specialized transceivers). It is designed for providing accurate timestamping of the packet time of arrival (TOA) to an adder-based tunable clock, which tracks the network time reference. The comprehensive set of experimental results based on prototypes, shows a TOA detection error with a standard deviation well below 1 ns. On the other hand, in the FPGA-based prototype, the synchronization performance reaches an overall synchronization error of few nanoseconds. Finally, in order to highlight the tradeoff between timestamping accuracy, clock stability, and synchronization performance, some additional simulations have been carried out: a synchronization error in the order of 1 ns is possible, if good local oscillator sources are available in the nodes and if the adjustable clock has a sufficient resolution.
机译:无线传感器网络因其提供的灵活性和可扩展性而变得越来越广泛。但是,仅当读数与时间信息耦合时,分布式测量才有意义。因此,全网时间同步是主要问题。本文的目的是开发一种非常简单的IR-UWB无线电硬件实现,以实现用于无线传感器的精确同步系统。提出的解决方案依赖于现成的商用分立电子组件(而不是专用的收发器)。它旨在向到达基于加法器的可调谐时钟的数据包到达时间(TOA)提供准确的时间戳,该时钟可跟踪网络时间参考。基于原型的综合实验结果集显示了TOA检测误差,其标准偏差远低于1 ns。另一方面,在基于FPGA的原型中,同步性能达到了几纳秒的整体同步误差。最后,为了强调时间戳精度,时钟稳定性和同步性能之间的折衷,我们进行了一些附加的仿真:如果节点和节点上有良好的本地振荡器源,则可能出现1 ns量级的同步误差。如果可调时钟具有足够的分辨率。

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