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A High Performance Piezoelectric Sensor for Dynamic Force Monitoring of Landslide

机译:一种用于滑坡动态力监测的高性能压电传感器

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Due to the increasing influence of human engineering activities, it is important to monitor the transient disturbance during the evolution process of landslide. For this purpose, a high-performance piezoelectric sensor is presented in this paper. To adapt the high static and dynamic stress environment in slope engineering, two key techniques, namely, the self-structure pressure distribution method (SSPDM) and the capacitive circuit voltage distribution method (CCVDM) are employed in the design of the sensor. The SSPDM can greatly improve the compressive capacity and the CCVDM can quantitatively decrease the high direct response voltage. Then, the calibration experiments are conducted via the independently invented static and transient mechanism since the conventional testing machines cannot match the calibration requirements. The sensitivity coefficient is obtained and the results reveal that the sensor has the characteristics of high compressive capacity, stable sensitivities under different static preload levels and wide-range dynamic measuring linearity. Finally, to reduce the measuring error caused by charge leakage of the piezoelectric element, a low-frequency correction method is proposed and experimental verified. Therefore, with the satisfactory static and dynamic properties and the improving low-frequency measuring reliability, the sensor can complement dynamic monitoring capability of the existing landslide monitoring and forecasting system.
机译:由于人类工程活动的影响越来越大,因此在滑坡演化过程中监测瞬态扰动非常重要。为此,本文提出了一种高性能的压电传感器。为了适应边坡工程中的高静态和动态应力环境,传感器的设计中采用了两种关键技术,即自结构压力分布法(SSPDM)和电容电路电压分布法(CCVDM)。 SSPDM可以大大提高压缩能力,而CCVDM可以定量降低高直接响应电压。然后,由于传统的测试机无法满足校准要求,因此通过独立发明的静态和瞬态机制进行校准实验。结果表明,该传感器具有抗压能力强,在不同的静态预载水平下灵敏度稳定,动态测量范围宽的特点。最后,为减少压电元件电荷泄漏引起的测量误差,提出了一种低频校正方法并进行了实验验证。因此,该传感器具有令人满意的静态和动态特性,并提高了低频测量的可靠性,可以补充现有滑坡监测和预报系统的动态监测能力。

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