基于啁啾的压电阻抗测量

T. Saar, M. Reidla, O. Martens, R. Land, M. Min, H. Herranen
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引用次数: 3

摘要

压电传感器测量的机电阻抗及其变化作为频率的函数,表明材料结构的状态和变化,可用于结构健康监测。现有的阻抗测量解决方案具有非常有限的功能和性能,或者体积大,成本高,不支持阻抗谱动态的实时监测。从各个方面描述和研究了利用啁啾激励信号的有效解决方案。利用正弦波啁啾激励信号和相应的正弦、余弦参考波计算相对较小滑动窗口内的相关性。它可以求出电网传递系数的实部和虚部,包括被测压电传感器的阻抗。从硬件的角度提出并测试了两种解决方案:一种是使用商用usb连接到PC机的数据采集单元,另一种是基于DSP (TMS320F28335)的解决方案。对于这两种情况,已经开发了特殊的模拟接口,用于以高达60 V的峰值电压驱动传感器电路。所提出的解决方案已成功地进行了测试。所提出的阻抗测量解决方案的各种应用领域被考虑,例如压电传感器本身的完整性检查和复合材料的分层测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chirp-based piezo-impedance measurement
Electro-mechanical impedance and its variations, measured with piezo-sensors as a function of frequency, indicate the conditions and changes in the structures of materials and can be used for structural health monitoring. Available impedance measurement solutions have very limited features and performance or are bulky and costly and not supporting real-time monitoring of the dynamics of impedance spectra. Efficient (by various aspects) solutions using the chirp excitation signal have been described and investigated. Sine-wave chirp excitation signal together with corresponding sine and cosine reference waves have been used for calculation of the correlation in the relatively small sliding window. It enables to find real and imaginary parts of the transfer coefficient of the electrical network, including impedance of the piezo-sensor under test. From the hardware viewpoint two solutions have been proposed and tested ' one with using of the commercial connected-by-USB to PC data acquisition unit and the second with the DSP (TMS320F28335) based solution. For both cases the special analogue interface has been developed for driving the sensor-circuit with up to 60 V peak-to-peak voltage. The proposed solutions have been tested successfully. Various application fields of the proposed impedance measurement solutions are considered ' e.g. integrity-check of the piezo-sensor itself and the delamination test of the composite material.
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