Parameter identification of inertial velocity sensor for low-frequency vibration measurement

Junzhong Li, Lei Wang, Bo Zhao, Guo-ru Zhao, Jing Wang, Zhen Zhang, Jiamin Chen, Shitong Wang
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引用次数: 1

Abstract

Whether velocity sensor can accurately acquire payload vibration information has become the most important factor that restricts vibration isolation performance. In order to get accurate sensor parameters, DC excitation method is used to measure the central frequency, damping ratio and sensitivity of inertial velocity sensor. The influence of different currents on the measurement accuracy of sensors such as response voltage, central frequency, damping ratio and sensitivity is analyzed, and the optimal current value is determined, which provides a powerful guarantee for obtaining accurate sensor parameters. Finally, the GS-11D sensor is used to carry out the experiment. The experimental results show that the relative error of the central frequency, damping ratio and sensitivity of the DC excitation method can meet the application requirements.
用于低频振动测量的惯性速度传感器参数辨识
速度传感器能否准确获取载荷振动信息已成为制约隔振性能的最重要因素。为了获得准确的传感器参数,采用直流励磁法测量惯性速度传感器的中心频率、阻尼比和灵敏度。分析了不同电流对传感器响应电压、中心频率、阻尼比、灵敏度等测量精度的影响,确定了最优电流值,为获得准确的传感器参数提供了有力保障。最后利用GS-11D传感器进行实验。实验结果表明,直流励磁方法的中心频率、阻尼比和灵敏度的相对误差均能满足应用要求。
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