Yuan Lishan, Wang Ning, Xie Ronghao, Wei Zhennan, Zeng Qingshuang, Wang Changhong
Space Control and Inertial Technology Research Center, Harbin Institute of Technology, Harbin 150080, China.
Sensors (Basel). 2024 Dec 26;25(1):74. doi: 10.3390/s25010074.
The hemispherical resonator gyroscope is a gyroscope based on the principle of Coriolis vibration, widely used in inertial measurement systems of spacecraft. This article decomposes the gyroscope into two parts: the resonator shell and the gyroscope head, establishes the energy dissipation mechanism of the gyroscope, and conducts experimental verification. Firstly, based on the working principle of the gyroscope, a mechanical analysis model of the hemispherical resonator gyroscope head with a resonator spherical shell containing quality defects under second-order vibration state was established. The unbalanced force applied by the resonator spherical shell to the hemispherical resonator gyroscope head was analyzed, and the energy transfer path and dissipation mechanism from the spherical shell to the hemispherical resonator gyroscope head were explained. Finally, through the constructed testing platform, the circumferential quality factor test of the hemispherical resonator gyroscope before and after assembly was completed according to the designed experimental plan, and the consistency between theory and experimental phenomena was verified experimentally.
半球谐振陀螺仪是一种基于科里奥利振动原理的陀螺仪,广泛应用于航天器的惯性测量系统中。本文将该陀螺仪分解为谐振器壳体和陀螺头部两部分,建立了陀螺仪的能量耗散机制,并进行了实验验证。首先,基于陀螺仪的工作原理,建立了二阶振动状态下含质量缺陷的谐振器球壳半球谐振陀螺仪头部的力学分析模型。分析了谐振器球壳对半球谐振陀螺仪头部施加的不平衡力,阐述了从球壳到半球谐振陀螺仪头部的能量传递路径和耗散机制。最后,通过搭建的测试平台,按照设计的实验方案完成了半球谐振陀螺仪组装前后的周向品质因数测试,实验验证了理论与实验现象的一致性。