Adaptive semi-active vibration isolation considering uncertainties of MR damper and structure

S. Furuki, A. Sano
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Abstract

A new fully adaptive control scheme is proposed for vibration isolation using a semi-active MR damper installed between ground and first floor, which is composed of two adaptive controllers. One is an adaptive inverse controller which can give necessary input voltage to MR damper so as to generate specified reference damping force acted on a controlled structure. The other is an adaptive reference controller which can match the dynamics of the first floor of structure to a desired reference dynamics. The proposed fully adaptive approach can deal with both uncertainties in models of MR damper and structure. The stability of the total system including the two adaptation mechanisms is discussed and the stability conditions are clarified. Experimental results are also shown to validate the effectiveness of the proposed adaptive scheme.
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考虑MR阻尼器和结构不确定性的自适应半主动隔振
提出了一种基于半主动磁流变阻尼器的全自适应隔振控制方案,该方案由两个自适应控制器组成。一种是自适应逆控制器,它可以为磁流变阻尼器提供必要的输入电压,从而产生作用于被控结构的特定参考阻尼力。另一种是自适应参考控制器,它可以将结构的第一层动力学与期望的参考动力学相匹配。提出的全自适应方法既能处理磁流变阻尼器模型中的不确定性,也能处理结构中的不确定性。讨论了包括两种自适应机制在内的整个体系的稳定性,并明确了稳定性条件。实验结果验证了该自适应方案的有效性。
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