首页> 外文期刊>Journal of intelligent material systems and structures >Control of piezoelectric friction dampers in smart base-isolated structures using self-tuning and adaptive fuzzy proportional-derivative controllers
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Control of piezoelectric friction dampers in smart base-isolated structures using self-tuning and adaptive fuzzy proportional-derivative controllers

机译:利用自整定和自适应模糊比例微分控制器控制智能隔震结构中的压电摩擦阻尼器

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摘要

To adjust the contact force of piezoelectric friction dampers for a benchmark base-isolated structure, a self-tuning fuzzy proportional-derivative controller and an adaptive fuzzy proportional-derivative controller are developed. Considering three candidate signals, namely, the isolation displacement, isolation velocity, and roof acceleration, the best feedback signal for the self-tuning fuzzy proportional-derivative controller is selected based on the Pareto-optimal front. The performance of the self-tuning fuzzy proportional-derivative controller during both near-field and far-field earthquakes is enhanced using an adaptive fuzzy proportional-derivative controller, in which the output gain of the self-tuning fuzzy proportional-derivative controller is adaptively tuned according to the kind of entering earthquake. The control objective is to reduce the isolation system deformations without significant increase in superstructure accelerations during far-field and near-field earthquake excitations. Membership functions and fuzzy control rules are simultaneously tuned using a multi-objective cuckoo search algorithm. Considering 14 real-data earthquakes, simulation results show that the proposed controllers perform better than other reported control strategies in terms of simultaneous reduction of the maximum base displacement and superstructure accelerations. Also, they provide acceptable responses in terms of the inter-story drifts, root mean squared of base displacement, and the floor acceleration. Opposite to other reported control strategies, piezoelectric friction dampers controlled by the self-tuning fuzzy proportional-derivative controller and adaptive fuzzy proportional-derivative controller never enter the saturation area.
机译:为了调整基准减震结构的压电摩擦阻尼器的接触力,研制了自调整模糊比例微分控制器和自适应模糊比例微分控制器。考虑隔离位移,隔离速度和顶板加速度三个候选信号,基于帕累托最优前沿,为自整定模糊比例微分控制器选择最佳反馈信号。使用自适应模糊比例微分控制器来增强自校正模糊比例微分控制器在近场和远场地震期间的性能,其中自适应地调整自校正模糊比例微分控制器的输出增益根据进入地震的类型进行调整。控制目标是在远场和近场地震激发过程中,在不显着增加上部结构加速度的情况下,减少隔离系统的变形。使用多目标布谷鸟搜索算法同时调整成员函数和模糊控制规则。考虑到14次真实地震,仿真结果表明,在同时减小最大基础位移和上部结构加速度的同时,所提出的控制器的性能优于其他报告的控制策略。而且,它们在层间漂移,基本位移的均方根和地板加速度方面提供了可接受的响应。与其他已报道的控制策略相反,由自整定模糊比例微分控制器和自适应模糊比例微分控制器控制的压电摩擦阻尼器永远不会进入饱和区域。

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