振动台非线性试件反作用力的自适应前馈补偿

K. Seki, M. Iwasaki, M. Kawafuku, H. Hirai, K. Yasuda
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引用次数: 11

摘要

本文提出了一种地震模拟器振动台系统的自适应控制方法。在该系统中,试件对振动台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较低。因此,为了补偿反作用力并提供精确的工作台运动,引入了自适应识别器,其中非线性试件的动态特性可以自适应识别,并可以补偿运动性能的恶化。通过振动台系统的数值模拟和实验验证了该控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive feedforward compensation for reaction force with nonlinear specimen in shaking tables
This paper presents an adaptive control methodology of shaking table systems for earthquake simulators. In the system, reaction force generated by a specimen on the shaking table generally deteriorates the table motion performance, resulting in the lower control accuracy of seismic tests. In order to compensate for the reaction force and to provide the precise table motion, therefore, an adaptive identifier is introduced, where dynamic characteristics of a nonlinear specimen are adaptively identified and can compensate for the deterioration in the motion performance. The proposed control approach has been verified by numerical simulations and experiments using a prototype of shaking table system.
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