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Solid state switching and signal conditioning system for Structural Health Monitoring based on piezoelectric sensors actuators

机译:基于压电传感器执行器的结构健康监测固态开关和信号调理系统

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The Structural Health Monitoring - SHM method based on electrical impedance has been developed as a promising tool for structure failure identification in real time and is considered a novel non-destructive evaluation method. The piezoelectric - PZT impedance can be directly associated to the structure's mechanical impedance where de PZT is bonded. Assuming that the mechanical PZT properties do not change over the monitoring time, the electrical PZT impedance can be used for monitoring structural health. The use of each PZT as both sensor and actuator reduces the total number of sensor and wires connecting them to the switching circuit. The technique consists in obtaining Frequency Response Functions - FRF, with the related signal modification, periodically. Modifications in the FRF of each PZT would indicate structural changes and, therefore, a possible failure. The required number of PZTs will be determined by the dimensions of the monitored structure and the precision required for locating a possible failure. To obtain the FRF of the entire monitored structure it is used a switching and signal conditioning system that continuously activate and deactivate each PZT. This paper proposes a solid state, low power, small sized and low signal distortion switching system. The system is quite modular and each module can manage 16 PZTs. It is possible to expand the sensing net by interconnecting a non limited number of modules. Descriptions of the working principles, circuits used and experimental results are presented.
机译:基于电阻抗的结构健康监测-SHM方法已被开发为实时识别结构故障的有前途的工具,被认为是一种新颖的无损评估方法。压电-PZT阻抗可以直接与结合de PZT的结构的机械阻抗相关联。假设机械PZT属性在监视时间内没有变化,则PZT电气阻抗可用于监视结构健康。将每个PZT既用作传感器又用作致动器,可以减少传感器和将它们连接到开关电路的导线的总数。该技术在于定期获取频率响应函数-FRF,以及相关的信号修改。每个PZT的FRF中的修改将指示结构变化,因此可能会导致故障。所需的PZT数量将由受监视结构的尺寸和确定可能的故障所需的精度来确定。为了获得整个监控结构的FRF,使用了一个开关和信号调节系统,该系统可以连续激活和停用每个PZT。本文提出了一种固态,低功耗,小尺寸和低信号失真的开关系统。该系统是非常模块化的,每个模块可以管理16个PZT。通过互连数量不限的模块,可以扩展传感网。介绍了工作原理,所用电路和实验结果的说明。

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