Key Laboratory of Nondestructive Testing and Evaluation for State Market Regulation, China Special Equipment Inspection and Research Institute, Beijing 100029, China.
Department of Mechanical Engineering and Automation, Beihang University, Beijing 100191, China.
Sensors (Basel). 2023 Apr 12;23(8):3904. doi: 10.3390/s23083904.
Near-field passive wireless sensors can realize non-contact strain measurement, so these sensors have extensive applications in structural health monitoring. However, these sensors suffer from low stability and short wireless sensing distance. This paper presents a bulk acoustic wave (BAW) passive wireless strain sensor, which consists of two coils and a BAW sensor. The force-sensitive element is a quartz wafer with a high quality factor, which is embedded into the sensor housing, so the sensor can convert the strain of the measured surface into the shift of resonant frequency. A double-mass-spring-damper model is developed to analyze the interaction between the quartz and the sensor housing. A lumped parameter model is established to investigate the influence of the contact force on the sensor signal. Experiments show that a prototype BAW passive wireless sensor has a sensitivity of 4 Hz/με when the wireless sensing distance is 10 cm. The resonant frequency of the sensor is almost independent of the coupling coefficient, which indicates that the sensor can reduce the measurement error caused by misalignment or relative movement between coils. Thanks to the high stability and modest sensing distance, this sensor may be compatible with a UAV-based monitoring platform for the strain monitoring of large buildings.
近场无源无线传感器可实现非接触式应变测量,因此在结构健康监测中有广泛的应用。然而,这些传感器存在稳定性低和无线感应距离短的问题。本文提出了一种基于体声波(BAW)的无源无线应变传感器,它由两个线圈和一个 BAW 传感器组成。力敏元件是嵌入传感器外壳的具有高品质因数的石英晶片,因此传感器可以将被测表面的应变转换为共振频率的移动。建立了一个双质量-弹簧-阻尼器模型来分析石英和传感器外壳之间的相互作用。建立了一个集总参数模型来研究接触力对传感器信号的影响。实验表明,当无线感应距离为 10cm 时,原型 BAW 无源无线传感器的灵敏度为 4Hz/με。传感器的共振频率几乎与耦合系数无关,这表明传感器可以减小由于线圈之间的不对准或相对运动而引起的测量误差。由于具有高稳定性和适中的感应距离,该传感器可能适用于基于无人机的监测平台,用于大型建筑物的应变监测。