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Remote vibration measurement: A wireless passive surface acoustic wave resonator fast probing strategy

机译:远程振动测量:无线无源声表面波谐振器快速探测策略

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摘要

Surface acoustic wave (SAW) resonators can advantageously operate as passive sensors which can be interrogated through a wireless link. Amongst the practical applications of such devices, structural health monitoring through stress measurement and more generally vibration characteristics of mechanical structures benefit from the ability to bury such sensors within the considered structure (wireless and battery-less). However, measurement bandwidth becomes a significant challenge when measuring wideband vibration characteristics of mechanical structures. A fast SAW resonator measurement scheme is demonstrated here. The measurement bandwidth is limited by the physical settling time of the resonator (Q/π periods), requiring only two probe pulses through a monostatic RADAR-like electronic setup to identify the sensor resonance frequency and hence stress on a resonator acting as a strain gauge. A measurement update rate of 4800 Hz using a high quality factor SAW resonator operating in the 434 MHz Industrial, Scientific and Medical band is experimentally demonstrated.
机译:声表面波(SAW)谐振器可以有利地用作无源传感器,可以通过无线链路进行查询。在此类设备的实际应用中,通过应力测量以及机械结构的更普遍的振动特性进行结构健康监测,得益于将此类传感器埋入考虑的结构(无线和无电池)中的能力。但是,在测量机械结构的宽带振动特性时,测量带宽成为一项重大挑战。这里展示了一种快速的SAW谐振器测量方案。测量带宽受限于谐振器的物理建立时间(Q /π周期),仅需通过一个类似RADAR的电子装置通过两个探测脉冲即可识别传感器谐振频率,从而确定充当应变仪的谐振器上的应力。实验证明了使用在434 MHz工业,科学和医学频段工作的高质量SAW谐振器的4800 Hz测量更新速率。

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