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Testing of a MEMS Dynamic Inclinometer Using the Stewart Platform

机译:使用Stewart平台测试MEMS动态倾角仪

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摘要

The micro-electro-mechanical system (MEMS) dynamic inclinometer integrates a tri-axis gyroscope and a tri-axis accelerometer for real-time tilt measurement. The Stewart platform has the ability to generate six degrees of freedom of spatial orbits. The method of applying spatial orbits to the testing of MEMS inclinometers is investigated. Inverse and forward kinematics are analyzed for controlling and measuring the position and orientation of the Stewart platform. The Stewart platform is controlled to generate a conical motion, based on which the sensitivities of the gyroscope, accelerometer, and tilt sensing are determined. Spatial positional orbits are also generated in order to obtain the tilt angles caused by the cross-coupling influence. The experiment is conducted to show that the tested amplitude frequency deviations of the gyroscope and tilt sensing sensitivities between the Stewart platform and the traditional rotator are less than 0.2 dB and 0.1 dB, respectively.
机译:微机电系统(MEMS)动态倾角仪集成了三轴陀螺仪和三轴加速度计,用于实时倾斜测量。斯图尔特平台具有产生六个空间轨道自由度的能力。研究了将空间轨道应用于MEMS测斜仪测试的方法。分析了反向和正向运动学,以控制和测量Stewart平台的位置和方向。控制Stewart平台以生成圆锥形运动,基于该运动确定陀螺仪,加速度计和倾斜感测的灵敏度。还产生空间位置轨道以便获得由交叉耦合影响引起的倾斜角。实验表明,经测试的陀螺仪幅度频率偏差和Stewart平台与传统旋转器之间的倾斜感测灵敏度分别小于0.2 dB和0.1 dB。

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