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Hybrid actuator-damper-bracing control (HDABC) system with intelligent strategy and soil-structure interaction

机译:具有智能策略和土壤-结构相互作用的混合式执行器-减振器-支撑系统(HDABC)系统

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摘要

The hybrid actuator-damper-bracing control (HDABC) system is composed of visco-elastic dampers and hydraulic actuators as the passive and active controllers, respectively, which are installed on the brace and connected to the building floor. The intelligent control strategy is designed to maximally utilize the passive damper and to minimally utilize the active energy. Thus, the passive controller of the hybrid system is designed for small and moderate earthquakes and the active controller works for large earthquakes, whenever the structural response exceeds the threshold values. The hybrid control system with this strategy is studied under existing earthquake records and the ground motions generated considering the tectonic movements of seismic plates; the influence of soil-structure interaction (SSI) on the control effectiveness is investigated. Based on analyses of single-story and six-story structures, it is concluded that the intelligent strategy is effective for the hybrid control, and SSI needs to be included in the design of the intelligent hybrid system as well as other types of control for buildings on soft soil.
机译:混合式执行器-减振器-支撑系统(HDABC)由粘弹性阻尼器和液压执行器组成,分别作为被动和主动控制器,安装在支架上并连接到建筑物地板。智能控制策略旨在最大程度地利用被动阻尼器,并最小化利用有功能量。因此,每当结构响应超过阈值时,混合系统的无源控制器都设计用于中小地震,而有源控制器则用于大地震。在现有地震记录和考虑地震板块构造运动产生的地震动的基础上,研究了采用这种策略的混合控制系统。研究了土壤-结构相互作用(SSI)对控制有效性的影响。在对单层和六层结构进行分析的基础上,得出结论:智能策略对于混合控制是有效的,在智能混合系统以及其他类型的建筑物控制设计中需要包含SSI。在柔软的土壤上。

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