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WIRELESS EXCITATION AND ELECTRICAL IMPEDANCE MATCHING OF PIEZOELECTRIC WAFER ACTIVE SENSORS

机译:压电晶片有源传感器的无线激励和电阻匹配

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Wireless ultrasound inspections using Piezoelectric Wafer Active Sensors (PWAS) are attractive for Structural Health Monitoring (SHM). However, the impedance mismatch between the PWAS and the wireless transponder reduces the wirelessly transmitted signal strength. Electrical Impedance Matching (EM) circuit can be introduced to maximize the power transmission between the PWAS and the wireless transponder. This paper discusses the wireless excitation of ultrasound as well as the design, simulation, and characterization of the ELM networks for PWAS. To maximize power transmission, a two port EM network was developed using a computerized smith chart. The equivalent circuit of the PWAS and the EIM network were then combined to establish the equivalent circuit of the matched transducer. Computer simulations were carried out to evaluate the gain, the bandwidth, and the sensitivity of the EIM networks. Two-port EBVI networks were implemented for both the actuator and the sensor in an ultrasound pitch-catch inspection system The performance of the pitch-catch systems with and without the EIM networks was compared. Detailed analysis, simulation, hardware implementation, and measurement results are presented.
机译:使用压电晶片有源传感器(PWAS)进行的无线超声检查对于结构健康监测(SHM)具有吸引力。但是,PWAS和无线应答器之间的阻抗不匹配会降低无线传输的信号强度。可以引入电抗匹配(EM)电路,以最大程度地提高PWAS和无线应答器之间的功率传输。本文讨论了超声波的无线激发以及用于PWAS的ELM网络的设计,仿真和表征。为了使功率传输最大化,使用计算机化的史密斯圆图开发了两端口EM网络。然后将PWAS和EIM网络的等效电路合并,以建立匹配换能器的等效电路。进行了计算机仿真,以评估EIM网络的增益,带宽和灵敏度。在超声波俯仰捕集检查系统中为执行器和传感器都采用了两端口EBVI网络。比较了有和没有EIM网络的俯仰捕集系统的性能。介绍了详细的分析,仿真,硬件实现和测量结果。

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