Horizontal Counter Control Method for Suppressing Vibration of Machine Base

Yuichi Kizu, T. Kai, H. Ikeda
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Abstract

This paper proposes a method for suppressing the vibration of machine bases by using a counter mass driving (CMD) system for fast and accurate positioning. In horizontal positioning systems, servo motors are widely used to drive a moving mass, but its reaction force causes the machine base on which the motors are mounted to vibrate. The CMD system, which drives an additional mass for vibration suppression, is well-known for its effectiveness. However, for practical uses, it is hard to design the performances of the system, e.g., positioning time, max torque, and range of motion. To suppress vibration and satisfy user requirements for performance, we devise a method for designing a vibration control filter analytically on the basis of a command shaping strategy. In experiments, we confirmed that the proposed method can suppress vibration and make the positioning time shorter by tuning the design parameters of the filter.
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抑制机床基座振动的水平反控制方法
本文提出了一种利用反质量驱动(CMD)系统抑制机床基座振动的方法,以实现快速、准确的定位。在水平定位系统中,伺服电机被广泛用于驱动运动物体,但其反作用力会使电机所安装的机床基座产生振动。CMD系统驱动额外的质量来抑制振动,其有效性是众所周知的。然而,在实际应用中,很难设计系统的性能,例如定位时间,最大扭矩和运动范围。为了抑制振动和满足用户对性能的要求,我们提出了一种基于命令成形策略的解析设计振动控制滤波器的方法。实验结果表明,通过调整滤波器的设计参数,可以有效地抑制振动,缩短定位时间。
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