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A mixed H2/H∞-based semiactive control for vibration mitigation in flexible structures

机译:基于H2 /H∞混合的半主动控制,用于减轻柔性结构中的振动

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摘要

In this paper, we address this problem through the design of a semiactive controller based on the mixed H2/H∞ control theory. The vibrations caused by the seismic motions are mitigated by a semiactive damper installed in the bottom of the structure. It is meant by semiactive damper, a device that absorbs but cannot inject energy into the system. Sufficient conditions for the design of a desired control are given in terms of linear matrix inequalities (LMIs). A controller that guarantees asymptotic stability and a mixed H2/H∞ performance is then developed. An algorithm is proposed to handle the semiactive nature of the actuator. The performance of the controller is experimentally evaluated in a real-time hybrid testing facility that consists of a physical specimen (a small-scale magnetorheological damper) and a numerical model (a large-scale three-story building)
机译:在本文中,我们通过基于混合H2 /H∞控制理论的半主动控制器的设计来解决此问题。安装在结构底部的半主动减震器减轻了地震运动引起的振动。半主动阻尼器是一种吸收但不能向系统注入能量的装置。根据线性矩阵不等式(LMI),给出了设计所需控件的充分条件。然后开发了一种保证渐近稳定性和H2 /H∞混合性能的控制器。提出了一种算法来处理执行器的半主动性。控制器的性能在包含物理样本(小型磁流变阻尼器)和数值模型(大型三层建筑)的实时混合测试设备中进行实验评估。

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