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Multi-scale wireless sensor node for health monitoring of civil infrastructure and mechanical systems

机译:多尺度无线传感器节点,用于民用基础设施和机械系统的健康监控

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摘要

This paper presents recent developments, in an extremely compact, wireless impedance sensor node (the WID3, Wireless Impedance Device) for use in high-frequency impedance-based structural health monitoring (SHM), sensor diagnostics and validation, and low-frequency (< ~1 kHz) vibration data acquisition. The WID3 is equipped with an impedance chip that can resolve measurements up to 100 kHz, a frequency range ideal for many SHM applications. An integrated set of multiplexers allows the end user to monitor seven piezoelectric sensors from a single sensor node. The WID3 combines on-board processing using a microcontroller, data storage using flash memory, wireless communications capabilities, and a series of internal and external triggering options into a single package to realize a truly comprehensive, self-contained wireless active-sensor node for SHM applications. Furthermore, we recently extended the capability of this device by implementing low-frequency analog-to-digital and digital-to-analog converters so that the same device can measure structural vibration data. The compact sensor node collects relatively low-frequency acceleration measurements to estimate natural frequencies and operational deflection shapes, as well as relatively high-frequency impedance measurements to detect structural damage. Experimental results with application to SHM, sensor diagnostics and low-frequency vibration data acquisition are presented.
机译:本文介绍了一种非常紧凑的无线阻抗传感器节点(WID3,无线阻抗设备)的最新进展,该节点用于基于高频阻抗的结构健康监测(SHM),传感器诊断和验证以及低频(< 〜1 kHz)的振动数据采集。 WID3配备了一个阻抗芯片,可以解析高达100 kHz的测量值,该频率范围是许多SHM应用的理想选择。一组集成的多路复用器允许最终用户从单个传感器节点监视七个压电传感器。 WID3将使用微控制器的板上处理,使用闪存的数据存储,无线通信功能以及一系列内部和外部触发选项结合在一起,形成一个封装,从而为SHM实现真正全面,独立的无线有源传感器节点应用程序。此外,我们最近通过实现低频模数转换器和数模转换器来扩展该设备的功能,以便同一设备可以测量结构振动数据。紧凑型传感器节点收集相对低频的加速度测量值,以估计固有频率和工作偏转形状,以及收集相对高频的阻抗测量值,以检测结构损坏。给出了应用于SHM,传感器诊断和低频振动数据采集的实验结果。

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