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A Study of the Temperature Characteristics of Vibration Mode Axes for Vibratory Cylinder Gyroscopes

机译:振动圆柱陀螺仪振动模式轴温度特性的研究

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摘要

The zero bias stability, which is an important performance parameter for vibratory cylinder gyroscopes, is high sensitive to temperature change. It is considered that the varying temperature makes the vibration mode axes unstable, which has significant influence on the zero bias stability. This paper will investigate this problem in detail. First, the relationships between the angular positions of vibration mode axes and the zero bias are analyzed. Secondly, the thermal-modal model of the cylinder resonator with several defects such as mass imbalance, frequency split (FS), and geometry errors are developed by ANSYS. Simulation results show that with the increase of temperature, angular positions of the vibration mode axes obviously change, which leads to a dramatic zero bias drift. Finally, several major influence factors on the angular position stability of vibration mode axes, including frequency split, geometry errors, thermal elastic modulus coefficient (TEMC) and thermal expansion coefficient (TEC) are analyzed in detail. Simulation results in this paper will be helpful for deep understanding of the drift principle of zero bias induced by temperature for vibratory cylinder gyroscopes and also be helpful for further temperature compensation or control.
机译:零偏稳定性是振动圆柱陀螺仪的重要性能参数,对温度变化高度敏感。可以认为,温度的变化使振动模式轴变得不稳定,这对零偏压的稳定性有很大的影响。本文将详细研究此问题。首先,分析振动模式轴的角位置与零偏压之间的关系。其次,ANSYS建立了具有质量不平衡,频率分裂(FS)和几何误差等缺陷的圆柱谐振器热模态模型。仿真结果表明,随着温度的升高,振动模式轴的角位置发生明显变化,导致零偏偏移急剧增大。最后,详细分析了影响振动模式轴角位置稳定性的几个主要因素,包括分频,几何误差,热弹性模量系数(TEMC)和热膨胀系数(TEC)。本文的仿真结果将有助于深入了解振动圆柱陀螺仪温度引起的零偏的漂移原理,并有助于进一步的温度补偿或控制。

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