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Experimental investigation on seismic response control of adjacent buildings using semi-active MR dampers

机译:使用半主动MR阻尼器对相邻建筑物地震反应控制的实验研究

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This paper reports an experimental study on semi-active seismic response control of adjacent building structures using magneto-rheological (MR) dampers. A 1:15 scaled adjacent structural system consisting of a 12-story building model and an 8-story building model was tested on shaking table with MR damper passive and semi-active control. An MR damper with large stroke is specifically designed for this study. After experimentally identifying dynamic characteristics of the individual MR damper and the uncontrolled structural models, the two building models are interconnected with the MR damper at different floors and semi-active control is implemented using the dSPACE DS1005 real-time control system. The structures are excited on their base by a shaking table imposing sweep sine excitation and El Centro earthquake excitation. A stochastic optimal control strategy proposed by the authors is applied through the dSPACE system and its MATLAB environment to accomplish real-time semi-active control from the measurement of displacement and velocity responses at each floor. This control strategy results in a dissipative energy control with its feedback control force being a nonlinear generalized damping force. The structural response under semi-active control is compared with that by using the MR damper as a passive device without voltage input. Different MR damper installation locations are addressed in the experimental study to search for maximum response mitigation capability.
机译:本文报道了一种使用磁流变(MR)阻尼器的相邻建筑物结构半主动地震反应控制的实验研究。 1:15由12层建筑模型组成的相邻结构系统,并在带有MR Damper被动和半主动控制的振动桌上测试了8层的建筑模型。专为这项研究专门设计了具有大冲程的阻尼器。在通过实验识别各个MR阻尼器的动态特性和不受控制的结构模型之后,两个建筑模型与不同地板的MR阻尼器相互连接,并使用DSPACE DS1005实时控制系统实现半主动控制。通过振动的桌子施加扫掠亮亮和EL Centro地震激发,在它们的基地上兴奋。作者提出的随机最佳控制策略通过DSPACE系统及其MATLAB环境应用,以实现从每个楼层的位移和速度响应的测量来实现实时半主动控制。该控制策略导致耗散能量控制,其反馈控制力是非线性通用阻尼力。将半主动控制下的结构响应与使用MR阻尼器作为无电压输入的无源器件进行比较。在实验研究中解决了不同的MR阻尼器安装位置,以寻找最大响应减轻能力。

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