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线性振动激励下含质量缺陷一次至三次谐波的半球形谐振器的驻波束缚

Standing Wave Binding of Hemispherical Resonator Containing First-Third Harmonics of Mass Imperfection under Linear Vibration Excitation.

作者信息

Huo Yan, Ren Shunqing, Wei Zhennan, Yi Guoxing

机构信息

Space Control and Inertial Technology Research Center, Harbin Institute of Technology, Harbin 150080, China.

出版信息

Sensors (Basel). 2020 Sep 23;20(19):5454. doi: 10.3390/s20195454.

Abstract

Due to complicated processing technology, the mass distribution of a hemispherical resonator made of fused silica is not uniform, which can affect the azimuth of the standing wave of a resonator under the linear vibration excitation. Therefore, the analysis of standing wave evolution of a resonator with mass imperfection under linear vibration excitation is of significance for the improvement of the output accuracy of a gyroscope. In this paper, it is assumed that the resonator containing the first-third harmonics of mass imperfection is excited by horizontal and vertical linear vibration, respectively; then, the equations of motion of an imperfect resonator under the second-order vibration mode are established by the elastic thin shell theory and Lagrange mechanics principle. Through error mechanism analysis, it is found that, when the frequency of linear vibration is equal to the natural frequency of resonator, the standing wave is bound in the azimuth of different harmonics of mass imperfection with the change in vibration excitation direction. In other words, there are parasitic components in the azimuth of the standing wave of a resonator under linear vibration excitation, which can cause distortion of the output signal of a gyroscope. On the other hand, according to the standing wave binding phenomenon, the azimuths of the first-third harmonics of mass imperfection of a resonator can also be identified under linear vibration excitation, which can provide a theoretical method for the mass balance of an imperfect resonator.

摘要

由于加工工艺复杂,熔融石英制成的半球形谐振器质量分布不均匀,这会影响线性振动激励下谐振器驻波的方位角。因此,分析质量存在缺陷的谐振器在直线振动激励下驻波的演化,对于提高陀螺仪的输出精度具有重要意义。本文假设含有质量缺陷一次至三次谐波的谐振器分别受到水平和垂直直线振动激励;然后,基于弹性薄壳理论和拉格朗日力学原理,建立了二阶振动模式下缺陷谐振器的运动方程。通过误差机理分析发现,当直线振动频率等于谐振器固有频率时,驻波会随着振动激励方向的改变而在质量缺陷的不同谐波方位上发生束缚。也就是说,直线振动激励下谐振器驻波方位存在寄生分量,这会导致陀螺仪输出信号失真。另一方面,根据驻波束缚现象,还可以在直线振动激励下识别出谐振器质量缺陷一次至三次谐波的方位,这可为缺陷谐振器的质量平衡提供一种理论方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4728/7582842/3c0071974bba/sensors-20-05454-g001.jpg

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