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Semi-active control of seismically excited base-isolated building model with friction pendulum systems

机译:摩擦摆系统对地震激励基础隔震建筑模型的半主动控制

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摘要

In this paper, effectiveness of various semi-active friction control strategies in protecting the base-isolated benchmark building model with friction pendulum systems as isolators and subject to various prescribed near-field ground motions has been investigated. These friction control strategies include semi-active discontinuous pulse filter (SADPF) controller, semi-active continuous pulse filter (SACPF) controller and visco-elastic friction (VEF) controller. In addition, the linear passive viscous (LPV) damper is also considered for comparison. Both the SACPF and SADPF controllers are designed by using the augmented structure-pulse filter model recently proposed by the authors. Simulation results indicate that all these controllers are effective in mitigating the base displacements, although the reduction in base displacement may be accompanied by an increase in superstructure response quantities. The SACPF controller is found to be the most effective among semi-active controllers, including Sample Lyapunov controller, in the sense that (ⅰ) increase in superstructure response quantities is quite minimal or these response quantities are decreased as the base displacement is reduced, (ⅱ) there is no amplification in peak base acceleration and (ⅲ) the control force does not have chattering-type characteristics and control force is applied only when peak base displacement is significant.
机译:在本文中,已经研究了各种半主动摩擦控制策略在保护以摩擦摆系统作为隔离器并经受各种规定的近场地面运动的基础隔离基准建筑模型中的有效性。这些摩擦控制策略包括半主动不连续脉冲滤波器(SADPF)控制器,半主动连续脉冲滤波器(SACPF)控制器和粘弹性摩擦(VEF)控制器。另外,还考虑了线性无源粘性(LPV)阻尼器进行比较。 SACPF和SADPF控制器都是通过使用作者最近提出的增强结构脉冲滤波器模型来设计的。仿真结果表明,尽管基础位移的减少可能伴随着上部结构响应量的增加,但所有这些控制器均有效地减轻了基础位移。 SACPF控制器在包括Sample Lyapunov控制器在内的半主动控制器中被认为是最有效的,这是因为(ⅰ)上层建筑响应量的增加非常小,或者随着基础位移的减小这些响应量会减小( ⅱ)峰值基加速度没有放大,并且(ⅲ)控制力不具有抖振型特性,仅当峰值基位移大时才施加控制力。

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