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Efficient and high-precision time synchronization for wireless monitoring of civil infrastructure subjected to sudden events

机译:用于突发事件的民事基础设施的无线监控有效和高精度的时间同步

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摘要

The implementation of a wireless smart sensor network (WSSN) to monitor a structure subjected to sudden events (e.g., earthquakes) poses many challenges. One typical challenge is to synchronize the data from different sensors during event-triggered sensing, because each wireless sensor has its own independent clock and their triggering time is generally different and unknowable. The challenge becomes more acute when real-time data acquisition is required to support vibration control or rapid damage assessment under sudden events. Although various strategies have been proposed to achieve synchronized sensing of WSSNs, all of these strategies fall short in addressing the challenges of sudden-event monitoring. In this paper, we first proposed an efficient two-stage time synchronization strategy for general structural health monitoring as a baseline and implemented it on a next-generation wireless smart sensor. Building upon the baseline method, efficient time synchronization strategies are proposed, which are fully autonomous and highly efficient for sudden-event monitoring. Two classes of events are considered: short-duration events, for example, bridge impacts, during which initial data loss issues are critical, and long-duration events, such as strong winds, which can benefit significantly from employing real-time monitoring. For short-duration events, a post-event time synchronization strategy is developed, which autonomously performs offline synchronization after measurement. For long-duration events, a real-time time synchronization strategy is proposed, which can support real-time applications under sudden events, for example, vibration control. These time synchronization strategies are experimentally validated to demonstrate the efficiency and accuracy (under 20-mu s maximum error) of the proposed sudden-event synchronized sensing strategies.
机译:无线智能传感器网络(WSSN)的实施来监视经受突发事件(例如,地震)的结构构成了许多挑战。一个典型的挑战是在事件触发的感测期间使来自不同传感器的数据同步,因为每个无线传感器都有自己的独立时钟,并且它们的触发时间通常是不同的和不可知的。当需要实时数据采集以支持突然事件下的振动控制或快速损坏评估时,挑战变得更加急剧。虽然已经提出了各种策略来实现WSSN的同步感测,但所有这些策略都在解决突然事件监测的挑战。在本文中,我们首先提出了一种有效的两阶段时间同步策略,用于一般结构健康监测作为基线,并在下一代无线智能传感器上实施。建立基线方法的建立,提出了有效的时间同步策略,这对于突然事件监测来说是完全自主的,高效的。考虑了两类事件:短持续时间事件,例如,桥接影响,在此期间初始数据丢失问题是关键的,并且长期事件(例如强风),可以从采用实时监控显着受益。对于短时间内事件,开发了一个事件后时间同步策略,在测量后自主地执行离线同步。对于长时间事件,提出了一种实时时间同步策略,其可以在突然事件下支持实时应用,例如振动控制。这些时间同步策略是通过实验验证的,以展示所提出的突然事件同步传感策略的效率和准确性(20-MU S最大误差)。

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