Guo Kechen, Wu Yulie, Zhang Yongmeng, Sun Jiangkun, Xiao Dingbang, Wu Xuezhong
College of Intelligence Science and Engineering, National University of Defense Technology, Changsha 410073, China.
Micromachines (Basel). 2020 Oct 19;11(10):945. doi: 10.3390/mi11100945.
Damping asymmetry is one of the most important factors that determines the performance of Coriolis Vibratory Gyroscope. In this paper, a novel damping tuning method for the resonator with parallel plate capacitors is presented. This damping tuning method is based on resistance heat dissipation and the tuning effect is characterized by the control force in Whole-Angle mode. As the damping tuning and stiffness tuning in the resonator with parallel plate capacitors are coupled with each other, a corresponding tuning system is designed. To verify the tuning effects, experiments are conducted on a hemispherical resonator gyroscope with Whole-Angle mode. The damping tuning theories is demonstrated by the testing results and 87% of the damping asymmetry is reduced by this tuning method with a cost of 3% decaying time. Furthermore, the angle-dependent drift in rate measurement after tuning is only 15.6% of the one without tuning and the scale factor nonlinearity decreases from 5.49 ppm to 2.66 ppm. The method can be further applied on the damping tuning in other resonators with symmetrical structure.
阻尼不对称是决定科里奥利振动陀螺仪性能的最重要因素之一。本文提出了一种针对具有平行板电容器的谐振器的新型阻尼调谐方法。这种阻尼调谐方法基于电阻散热,调谐效果以全角模式下的控制力为特征。由于具有平行板电容器的谐振器中的阻尼调谐和刚度调谐相互耦合,因此设计了相应的调谐系统。为了验证调谐效果,在具有全角模式的半球谐振器陀螺仪上进行了实验。测试结果证明了阻尼调谐理论,通过这种调谐方法,87%的阻尼不对称性得以降低,代价是衰减时间增加3%。此外,调谐后速率测量中与角度相关的漂移仅为未调谐时的15.6%,标度因数非线性从5.49 ppm降至2.66 ppm。该方法可进一步应用于其他具有对称结构的谐振器的阻尼调谐。