Vibration Damping Mechanisms with Gyroscopic Moment

O. Nishihara, H. Matsuhisa, Susumu Satō
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引用次数: 7

Abstract

Damping mechanisms based on gyroscopic moments are studied and their characteristics are compared with conventional mechanisms. A generalized form of Schlick's gyroscope is theoretically analyzed, and an optimal design method is derived. The stabilizing effect is compared with the rotational dynamic vibration absorber. It turns out that the effect of the passive gyroscopic stabilizer depends on the rotating speed of the gyroscope; thus the stabilizer has no essential limitation by the inertial moment such as there is with the rotational dynamic vibration absorber. The gimbal movement of the CMG (control moment gyroscope) is directly controlled with an actuator, thus it can be used as a fully active vibration control mechanism. The single-gimbal CMG is compared with the RW (reaction wheel) with respect to the damping efficiency for impulsive disturbances. Experiments with a single-gimbal CMG for a Pendulum are carried out and the results prove the efficiency.
具有陀螺力矩的减振机制
研究了基于陀螺力矩的阻尼机构,并与传统机构进行了比较。对施立克陀螺仪的广义形式进行了理论分析,并推导出其优化设计方法。并与旋转动态减振器的稳定效果进行了比较。结果表明,被动陀螺仪稳定器的作用取决于陀螺仪的转速;因此稳定器不像旋转动力减振器那样受惯性矩的本质限制。CMG(控制力矩陀螺仪)的云台运动由作动器直接控制,因此它可以作为一个全主动振动控制机构。比较了单框架CMG与反作用轮对脉冲扰动的阻尼效率。用单万向摆CMG进行了实验,结果证明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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