振动台系统反力频率辨识补偿

K. Seki, M. Iwasaki, H. Hirai
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引用次数: 3

摘要

本文提出了一种实用的地震模拟器振动台控制方法。试件在振动台上产生的反作用力一般会使振动台的运动性能恶化,导致地震试验控制精度降低。特别是对包括周期性转动的电动机在内的结构(电力设施、大型车辆等)进行励磁试验时,在实际运行过程中,以特定频率激发作为扰动的反作用力。此外,电动机旋转频率的变化引起扰动中频率的变化。因此,为了补偿这种可变干扰,自适应反馈补偿器应该是一种有前途的方法,通过应用自适应陷波滤波器在线识别频率来提高干扰抑制能力。该控制方法已通过振动台样机的实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reaction force compensation with frequency identifier in shaking table systems
This paper presents a practical control methodology of shaking tables for earthquake simulators. Reaction force generated by a specimen on the shaking table generally deteriorates the motion performance of the table, resulting in the lower control accuracy of seismic tests. Especially, in cases of excitation tests for structures (power facilities, large vehicles, etc.) including motors with periodic rotation, the reaction force as a disturbance is excited with a specific frequency during their actual operations. In addition, the variation of the rotational frequency in the motor causes the variation of frequency in the disturbance. In order to compensate for such variable disturbances, therefore, an adaptive feedback compensator should be a promissing approach to improve the disturbance suppression capability, by applying an adaptive notch filter to identify the frequency in on line manner. The proposed control approach has been verified by experiments using a prototype of shaking table system.
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