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Two Novel Measurements for the Drive-Mode Resonant Frequency of a Micromachined Vibratory Gyroscope

机译:微机械振动陀螺仪的驱动模式共振频率的两种新颖测量。

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To investigate the drive-mode resonance frequency of a micromachined vibratory gyroscope (MVG), one needs to measure it accurately and efficiently. The conventional approach to measure the resonant frequency is by performing a sweep frequency test and spectrum analysis. The method is time-consuming and inconvenient because of the requirements of many test points, a lot of data storage and off-line analyses. In this paper, we propose two novel measurement methods, the search method and track method, respectively. The former is based on the magnitude-frequency characteristics of the drive mode, utilizing a one-dimensional search technique. The latter is based on the phase-frequency characteristics, applying a feedback control loop. Their performances in precision, noise resistivity and efficiency are analyzed through detailed simulations. A test system is implemented based on a field programmable gate array (FPGA) and experiments are carried out. By comparing with the common approach, feasibility and superiorities of the proposed methods are validated. In particular, significant efficiency improvements are achieved whereby the conventional frequency method consumes nearly 5,000 s to finish a measurement, while only 5 s is needed for the track method and 1 s for the search method.
机译:为了研究微机械振动陀螺仪(MVG)的驱动模式共振频率,需要准确,有效地对其进行测量。测量谐振频率的常规方法是执行扫频测试和频谱分析。由于许多测试点,大量数据存储和离线分析的要求,该方法既费时又不方便。在本文中,我们提出了两种新颖的测量方法,分别是搜索方法和跟踪方法。前者基于驱动模式的幅频特性,利用一维搜索技术。后者基于相频特性,并采用反馈控制环路。通过详细的仿真分析了它们在精度,抗噪性和效率方面的性能。基于现场可编程门阵列(FPGA)实现了测试系统并进行了实验。通过与常用方法的比较,验证了所提方法的可行性和优越性。特别是,实现了显着的效率提高,从而传统的频率方法消耗了将近5,000 s来完成测量,而跟踪方法只需要5 s,搜索方法只需要1 s。

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