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Soft initial-rotation and H∞ robust constant rotational speed control for rotational MEMS gyro

机译:旋转MEMS陀螺仪的软初始旋转和H∞鲁棒恒定转速控制

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摘要

A novel soft initial-rotation control system and an H∞ robust constant rotational speed controller (RCRSC) for a rotational MEMS (micro-electro-mechanical system) gyro are presented. The soft initial-rotation control system can prevent the possible tumbling down of the suspended rotor and ensure a smooth and fast initial-rotation process. After the initial-rotation process, in order to maintain the rotational speed accurately constant, the RCRSC is acquired through the mixed sensitivity design approach. Simulation results show that the actuation voltage disturbances from the internal carrier waves in the gyro is reduced by more than 15.3 dB, and the speed fluctuations due to typical external vibrations ranging from 10 Hz to 200 Hz can also be restricted to 10−3 rad/s order.
机译:提出了一种新颖的软初始旋转控制系统和一种用于旋转MEMS(微机电系统)陀螺仪的H∞鲁棒恒定转速控制器(RCRSC)。柔和的初始旋转控制系统可以防止悬挂的转子可能翻倒,并确保平稳,快速的初始旋转过程。在初始旋转过程之后,为了保持转速精确恒定,通过混合灵敏度设计方法获取了RCRSC。仿真结果表明,陀螺仪内部载波产生的激励电压扰动减少了15.3 dB以上,典型外部振动(从10 Hz到200 Hz)引起的速度波动也可以限制在10−3 rad /的命令。

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