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A study on dynamic measurement methods based on vibrating wire sensors

机译:基于振动线传感器的动态测量方法研究

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摘要

Vibrating wire sensors are widely used in long-term static strain monitoring. However, when dynamic measurements are needed, conventional measuring methods are unsuitable. On the basis of the static measuring method, in this paper we propose a new method of dynamic frequency excitation and measurement based on vibrating wire sensors. In the dynamic frequency excitation method, we adopt intermittent self-adaptive excitation which allows the internal steel in the sensor to vibrate continuously, without attenuation. In turn, this allows us to continuously collect and analyze the sensor signal. We use a dynamic frequency measurement algorithm to subsequently process the data, which interpolates three spectral lines based on a windowed fast Fourier transform. The resonance frequency of the sensor is obtained, which then allows us to dynamically acquire the strain. Through data analysis, the theoretical calculation error of the resonance frequency can be obtained to within 0.015 Hz, and the theoretical sampling rate of dynamic strain measurement can reach to 325 Hz. In addition, through our experiments, the efficiency and the feasibility of our methods are verified.
机译:振动线传感器广泛用于长期静态应变监测。但是,当需要动态测量时,传统的测量方法是不合适的。在静态测量方法的基础上,本文提出了一种新的动态频率激励方法和基于振动线传感器的测量方法。在动态频率励磁方法中,我们采用间歇自适应激励,该激励允许传感器中的内钢连续振动,而不会衰减。反过来,这允许我们连续收集和分析传感器信号。我们使用动态频率测量算法随后处理数据,该数据基于窗口的快速傅里叶变换来插入三个光谱线。获得传感器的共振频率,然后允许我们动态获取应变。通过数据分析,可以获得谐振频率的理论计算误差在0.015Hz以内,动态应变测量的理论采样率可以达到325Hz。此外,通过我们的实验,验证了我们方法的效率和可行性。

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