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Self-Diagnosis and Validation of Active Sensors used for Structural Health Monitoring

机译:用于结构健康监测的活性传感器的自诊断和验证

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This paper presents a self-diagnostic and sensor validation procedure that performs in-situ monitoring of the operational status of piezoelectric (PZT) sensors and actuators used in structural health monitoring (SHM) applications. The sensor/actuator self-diagnostic procedure, where the sensors/actuators are confirmed to be functioning properly during operation, is a critical component to successfully complete the SHM process with large numbers of active sensors typically deployed in a structure. Both degradation of the mechanical/electrical properties of a PZT transducer and the bonding defects between a PZT patch and a host structure could be identified using the proposed procedure. First, the effects of bonding defects between a PZT patch and a host structure on high frequency SHM techniques, including Lamb wave propagations and impedance methods, have been experimentally investigated. It has been found that the effects are remarkable, modifying wave phase and amplitude, creating new wave modes, and changing measured impedance spectrum. These changes can lead to the false indications on structural conditions without an efficient sensor-diagnostic procedure. The feasibility of the proposed sensor diagnostics procedure was then demonstrated by analytical studies and experimental examples, where the functionality of surface-mounted piezoelectric sensors was continuously deteriorated. The proposed procedure can provide a metric that can be used to determine the sensor functionality over a long period of service time or after an extreme loading event. Further, the proposed procedure can be useful if one needs to check the operational status of a sensing network right after its installation.
机译:本文介绍了一种自诊断和传感器验证程序,可以出于原位监控结构健康监测(SHM)应用中使用的压电(PZT)传感器和执行器的操作状态。传感器/致动器自诊断过程,其中传感器/执行器在操作期间正常运行,是成功完成SHM过程的关键组件,其具有通常在结构中部署的大量有效传感器。一个压电片和主机结构之间的机械/电气的PZT换能器的特性和接合缺陷的两个退化可能使用所提出的过程来识别。首先,已经通过实验研究了PZT贴片和高频SHM技术在高频SHM技术上的粘合缺陷与宿主结构之间的影响,包括羊波传播和阻抗方法。已经发现,效果是显着的,修改波相和幅度,产生新的波动模式,以及改变测量的阻抗谱。这些变化可能导致结构条件上的虚假指示,而无需高效的传感器诊断程序。然后通过分析研究和实验实施例证明了所提出的传感器诊断程序的可行性,其中表面安装的压电传感器的功能连续劣化。所提出的过程可以提供可用于在长期的服务时间或极端加载事件之后确定传感器功能的度量。此外,如果在安装后需要检查传感网络的操作状态,则所提出的程序可能是有用的。

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