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首页> 外文期刊>Sensors Journal, IEEE >Comparison of Three Automatic Mode-Matching Methods for Silicon Micro-Gyroscopes Based on Phase Characteristic
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Comparison of Three Automatic Mode-Matching Methods for Silicon Micro-Gyroscopes Based on Phase Characteristic

机译:基于相位特性的硅微陀螺三种自动模式匹配方法的比较

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In this paper, we investigated the method of automatic matching of the resonant frequencies for the decoupled dual-mass -axis silicon micro-gyroscopes. The structure of the studied gyroscope is first presented, which features the tuning combs for adjusting the resonant frequency, suppressing the quadrature error, and applying the feedback force. According to the phase characteristic of oscillators, different automatic frequency tuning loops are then designed to match the resonant frequencies of the drive and detection modes. Theoretical analysis is made to display the operation principles. In addition, they are verified and optimized by numeric simulations using the Simulink tool in MATLAB. Finally, by means of Labview Field Programmable Gate Array (FPGA), a digital hardware tool, these loops are tested on a fabricated and packaged gyroscope prototype. By comparison, it is found that when the automatic matching method under the external force is combined with the quadrature nulling method and the Coriolis closed-loop detection, the gyroscope is able to operate under real-time mode matching with a stable and small frequency split below 1 Hz. The performance of the prototype using this tuning method is: 1) the scale factor is 10.91 mV/°/s; 2) the input range is ±120°/s with nonlinearity of 0.1%; and 3) the bandwidth is 32 Hz. The frequency split varies by about 0.15 Hz under the open-loop detection and about 0.26 Hz under the closed-loop detection when the environment temperature changes by 80 °C.
机译:在本文中,我们研究了解耦的双质量轴硅微陀螺仪的共振频率自动匹配方法。首先介绍了所研究的陀螺仪的结构,该结构具有用于调节谐振频率,抑制正交误差和施加反馈力的调谐梳。根据振荡器的相位特性,然后设计不同的自动频率调谐环路以匹配驱动模式和检测模式的谐振频率。进行理论分析以显示操作原理。此外,使用MATLAB中的Simulink工具通过数值模拟对它们进行了验证和优化。最后,借助Labview现场可编程门阵列(FPGA)(一种数字硬件工具),这些循环在制造和封装的陀螺仪原型上进行了测试。相比之下,发现将外力作用下的自动匹配方法与正交归零方法和科里奥利闭环检测相结合时,陀螺仪能够在实时模式下进行匹配,并具有稳定且较小的分频比低于1 Hz。使用这种调整方法的原型的性能为:1)比例因子为10.91 mV /°/ s; 2)输入范围为±120°/ s,非线性为0.1%; 3)带宽为32 Hz。当环境温度变化80°C时,开环检测时的频率分割变化约0.15 Hz,闭环检测时的频率分割变化约0.26 Hz。

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