单质量六自由度惯性测量单元系统的宏观模型分析

H. Almabrouk, Maha Kharroubi, Fares Tounsi, B. Mezghani, Y. Bernard
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引用次数: 1

摘要

本文对六轴微机械惯性测量单元(IMU)结构进行了初步分析。我们首先回顾了目前在文献中发现的六轴IMU传感器技术的方法。然后,我们提出并分析了所提出的单质量宏观模型结构。我们主要研究基于SMSD方法的单个块同时检测所有可能的六轴运动分量。角速度检测方法基于科里奥利效应,该效应要求对附着在压电膜上的悬体施加一定的平移。研究了两种方法:第一种是基于薄膜的特征频率,第二种是基于逆压电效应来驱动薄膜。因此,沉积在压电膜上的电极可用于基于正/逆压电效应的传感和驱动机构。作为初步研究,对由压电蜂鸣器组成的IMU宏观模型进行了模态分析。有限元模拟结果与实测结果吻合较好。研究人员对膜在线性加速度下的外加应力进行了评估,并对允许应力值提高3至4倍的改进设计进行了研究。
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Macro model analysis of a single mass 6-DOF Inertial Measurement Unit system
In this paper, a preliminary analysis of a 6-axis micromachined Inertial Measurement Unit (IMU) structure is performed. We firstly give a review of current approaches found in literature for 6-axis IMU sensor technology. Then, we present and analyze the proposed single mass macro model structure. We mainly investigate the simultaneous detection of all possible six axis motion components with a single bloc based on SMSD approach. The angular velocity detection method is based on the Coriolis Effect which requires a certain translation applied to a suspended mass attached to a piezoelectric membrane. Two methods have been examined: first one is based on the Eigenfrequencies of the membrane, and second one is based on the inverse piezoelectric effect to actuate the membrane. So, electrodes deposited on the piezoelectric membrane are employed for sensing and actuating mechanisms based on direct/reverse piezoelectric effects. As a primary investigation, a modal analysis of the IMU macro model consisting of a piezoelectric Buzzer is presented. FEM simulations and measurement values show a good agreement. Applied stress on the membrane submitted to a linear acceleration is evaluated and improved designs, allowing 3 to 4 times higher stress values, are investigated.
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