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Micro-Gyroscopes with Dynamic Disturbance Rejection

机译:具有动态干扰抑制功能的微陀螺仪

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摘要

This paper reports a novel micromachined gyroscope design with inherent disturbance-rejection capabilities. The proposed approach is based on increasing the degrees-of-freedom (DOF) of the oscillatory system by the use of two independently oscillating proof masses. Utilizing dynamical amplification in the 4-DOF system, inherent disturbance rejection is achieved, providing reduced sensitivity to structural and thermal parameter fluctuations and damping change's over the operating time of the device. In the proposed system, the first mass is forced to oscillate in the drive direction, and the response of the second mass in the orthogonal direction is sensed. The response has two resonant peaks and a fiat region between peaks. Operation is in the fiat region, where the gain is insensitive to frequency fluctuations. Simulations indicate over 15 times increase in the bandwidth of the system due to the use of the proposed architecture. In addition, the gain in the operation region has low sensitivity to damping changes. Consequently. by utilizing the disturbance-rejection capability of the dynamical system, improved robustness is achieved, which can relax tight fabrication tolerances and packaging requirements and thus result in reducing production cost of mieromachined gyroscopes.
机译:本文报道了一种具有固有干扰抑制能力的新型微机械陀螺仪设计。所提出的方法是基于通过使用两个独立振荡的检测质量来增加振荡系统的自由度(DOF)。利用4-DOF系统中的动态放大,可以实现固有的干扰抑制能力,从而降低了器件工作期间对结构和热参数波动以及阻尼变化的敏感性。在提出的系统中,第一质量被迫在驱动方向上振荡,并且第二质量在正交方向上的响应被感测。该响应具有两个共振峰和两个峰之间的平坦区域。操作在平坦区域内,该区域对频率波动不敏感。仿真表明,由于使用了建议的体系结构,因此系统带宽增加了15倍以上。另外,操作区域中的增益对阻尼变化的敏感性较低。所以。通过利用动态系统的干扰消除能力,可以提高鲁棒性,从而可以放宽严格的制造公差和封装要求,从而降低微型机械陀螺仪的生产成本。

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