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Characterization of the Bell-Shaped Vibratory Angular Rate Gyro

机译:钟形振动角速率陀螺仪的​​表征

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The bell-shaped vibratory angular rate gyro (abbreviated as BVG) is a novel shell vibratory gyroscope, which is inspired by the Chinese traditional bell. It sensitizes angular velocity through the standing wave precession effect. The bell-shaped resonator is a core component of the BVG and looks like the millimeter-grade Chinese traditional bell, such as QianLong Bell and Yongle Bell. It is made of Ni43CrTi, which is a constant modulus alloy. The exciting element, control element and detection element are uniformly distributed and attached to the resonator, respectively. This work presents the design, analysis and experimentation on the BVG. It is most important to analyze the vibratory character of the bell-shaped resonator. The strain equation, internal force and the resonator's equilibrium differential equation are derived in the orthogonal curvilinear coordinate system. When the input angular velocity is existent on the sensitive axis, an analysis of the vibratory character is performed using the theory of thin shells. On this basis, the mode shape function and the simplified second order normal vibration mode dynamical equation are obtained. The coriolis coupling relationship about the primary mode and secondary mode is established. The methods of the signal processing and control loop are presented. Analyzing the impact resistance property of the bell-shaped resonator, which is compared with other shell resonators using the Finite Element Method, demonstrates that BVG has the advantage of a better impact resistance property. A reasonable means of installation and a prototypal gyro are designed. The gyroscopic effect of the BVG is characterized through experiments. Experimental results show that the BVG has not only the advantages of low cost, low power, long work life, high sensitivity, and so on, but, also, of a simple structure and a better impact resistance property for low and medium angular velocity measurements.
机译:钟形振动角速度陀螺仪(简称BVG)是一种新颖的壳式振动陀螺仪,其灵感来自于中国传统的钟声。它通过驻波进动效应使角速度敏感。钟形谐振器是BVG的核心组件,看起来像千龙级的中国传统钟,例如乾隆钟和永乐钟。它由恒定模量合金Ni43CrTi制成。激励元件,控制元件和检测元件分别均匀地分布并附接到谐振器。这项工作介绍了BVG的设计,分析和实验。分析钟形谐振器的振动特性是最重要的。在正交曲线坐标系中导出了应变方程,内力和谐振器的平衡微分方程。当敏感轴上存在输入角速度时,将使用薄壳理论对振动特性进行分析。在此基础上,获得了振型函数和简化的二阶法向振动模动力方程。建立了关于主模和次模的科里奥利耦合关系。介绍了信号处理和控制回路的方法。分析钟形谐振器的抗冲击性能,与使用有限元方法与其他壳形谐振器进行比较,证明BVG具有更好的抗冲击性能。设计了合理的安装方式和原型陀螺仪。通过实验来表征BVG的陀螺效应。实验结果表明,BVG不仅具有成本低,功率低,使用寿命长,灵敏度高等优点,而且结构简单,抗冲击性能好,适用于中低角速度测量。

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