多体动力学软件辅助振动台系统扰动补偿信号设计

K. Seki, Kazuhiro Sugita, M. Iwasaki
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引用次数: 0

摘要

本文提出了一种抑制振动台系统中试件质心运动扰动的方法。在该系统中,试件的倾覆力矩作为质心运动产生的扰动,一般会使台的运动性能恶化,导致所需地震加速度的再现性较低。为了补偿扰动,利用多体动力学软件对含试件的振动台进行建模。在仿真的基础上,通过对仿真的迭代学习控制产生能够抵消干扰的补偿信号。该方法已通过实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of disturbance compensation signals aided by multi-body dynamics software in shaking table systems
This paper presents a suppression approach of disturbances due to the centroid movement of specimen in shaking table systems. In the system, overturning moment of specimen as the disturbance, which is generated by centroid movement, generally deteriorates the motion performance of the table, resulting in the lower reproducibility for the desired earthquake acceleration. In order to compensate for the disturbance, a shaking table including the specimen is modeled using a multi-body dynamics software. Based on the simulator, compensation signals that can cancel the disturbance are generated by an iterative learning control on the simulation. The proposed approach has been verified by experiments using a laboratory setup.
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