Frequency mismatch analysis of hemispherical shell resonators with both radius and thickness imperfections

Kaixin Deng, Libin Zeng, Yao Pan, Yonglei Jia, Yiming Luo, Yunfeng Tao, Jie Yuan
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Abstract

The hemispherical shell resonator (HSR) is the core element of the hemispherical resonator gyroscope (HRG), and its frequency mismatch is a key property influencing gyroscope accuracy. Investigating the mechanism of frequency mismatch is vital for improving the quality of HSRs and performance of HRGs. Midsurface radius imperfections and thickness imperfections are two principal causes of frequency mismatch, but their combined effects have rarely been discussed. This paper develops a model to comprehensively analyze the frequency mismatch of HSRs with both radius and thickness imperfections. The model derives a quantitative relation between the frequency mismatch and the two imperfections, and provides principles for evaluating dominant imperfections. To validate the model, we conduct experiments on a batch of 12 HSRs with random geometric imperfections. We apply the model in calculating the theoretical frequency mismatches of these HSRs, and the results agree well with the experimental data. The experiment also confirms that for macro-HSRs, thickness imperfections have a larger impact than radius imperfections, and the frequency mismatch is approximately linear to the fourth thickness harmonic. Our research can be a useful reference for the design and fabrication of HSRs and may open new possibilities for high-precision manufacture of HRGs.
具有半径和厚度缺陷的半球形外壳谐振器的频率失配分析
半球壳谐振器(HSR)是半球谐振器陀螺仪(HRG)的核心元件,其频率失配是影响陀螺仪精度的关键特性。研究频率失配的机理对于提高 HSR 的质量和 HRG 的性能至关重要。中表面半径缺陷和厚度缺陷是频率失配的两个主要原因,但很少有人讨论它们的综合影响。本文建立了一个模型,以全面分析具有半径和厚度缺陷的 HSR 的频率失配。该模型得出了频率失配与两种缺陷之间的定量关系,并提供了评估主要缺陷的原则。为了验证该模型,我们在一批具有随机几何缺陷的 12 个 HSR 上进行了实验。我们应用该模型计算了这些高铁的理论频率失配,结果与实验数据非常吻合。实验还证实,对于宏HSR,厚度缺陷比半径缺陷的影响更大,频率失配与四次厚度谐波近似成线性关系。我们的研究可以为 HSR 的设计和制造提供有益的参考,并为 HRG 的高精度制造开辟了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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