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首页> 外文期刊>Journal of intelligent material systems and structures >Real-time Hybrid Test on a Semi-actively Controlled Building Structure Equipped with Full-scale MR Dampers
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Real-time Hybrid Test on a Semi-actively Controlled Building Structure Equipped with Full-scale MR Dampers

机译:配备全尺寸MR阻尼器的半主动控制建筑结构的实时混合测试

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The real-time hybrid testing method (RT-HYTEM) is a structural testing technique in which the numerical integration of the equation of motion for a numerical substructure and the physical testing for an experimental substructure are performed simultaneously in real-time. This article presents the quantitative evaluation of the seismic performance of a building structure installed with a magnetorheological (MR) damper using RT-HYTEM. A building model is identified from the force-vibration testing results of a full-scale five-story building and is used as the numerical substructure, and an MR damper corresponding to an experimental substructure is physically tested using a universal testing machine (UTM). First, the force required to drive the displacement of the story, at which the MR damper is located, is measured from the load cell attached to the UTM. The measured force is then returned to a control computer to calculate the response of the numerical substructure. Finally, the experimental substructure is excited by the UTM with the calculated response of the numerical substructure. The RT-HYTEM implemented in this study is validated because the real-time hybrid testing results obtained by application of sinusoidal and earthquake excitations and the corresponding analytical results obtained using the Bouc-Wen model as the control force of the MR damper with respect to input currents are in good agreement. Also, the results from RT-HYTEM for the passive -on and -off control show that the structural responses did not decrease further by the excessive control force, but decreased due to the increase of the current applied to the MR damper. Also, two semi-active control algorithms (modulated homogeneous friction and the clipped-optimal control algorithms) are applied to the MR damper in order to optimally control the structural responses. To compare the RT-HYTEM and numerical results, Bouc-Wen model parameters are identified for each input current. The results of the comparison of experimental and numerical responses show that it is more practical to use RT-HYTEM in semi-active devices such as MR dampers. The test results show that a control algorithm can be experimentally applied to the MR damper using RT-HYTEM. This article provides a discussion on each algorithm with respect to the seismic performances.
机译:实时混合测试方法(RT-HYTEM)是一种结构测试技术,其中实时同时进行数值子结构的运动方程的数值积分和实验子结构的物理测试。本文介绍了使用RT-HYTEM对安装了磁流变(MR)阻尼器的建筑结构进行抗震性能的定量评估。从完整的五层建筑的力振动测试结果中识别出建筑模型,并将其用作数字子结构,并使用通用测试机(UTM)对与实验子结构相对应的MR阻尼器进行物理测试。首先,从安装在UTM上的称重传感器测量驱动MR阻尼器所在的楼层位移所需的力。然后将测得的力返回到控制计算机,以计算数字子结构的响应。最后,UTM激发实验子结构,并计算出数值子结构的响应。之所以对本研究中实施的RT-HYTEM进行了验证是因为通过应用正弦和地震激励获得的实时混合测试结果以及使用Bouc-Wen模型作为MR阻尼器相对于输入的控制力获得的相应分析结果电流非常吻合。此外,RT-HYTEM进行被动开和关控制的结果表明,结构响应不会因过大的控制力而进一步降低,而是由于施加到MR阻尼器的电流增加而降低。同样,将两种半主动控制算法(调制均匀摩擦和限幅最优控制算法)应用于MR阻尼器,以最佳地控制结构响应。为了比较RT-HYTEM和数值结果,为每个输入电流确定了Bouc-Wen模型参数。实验和数值响应的比较结果表明,将RT-HYTEM用于MR阻尼器等半主动装置更为实用。测试结果表明,可以通过RT-HYTEM将控制算法实验性地应用于MR阻尼器。本文就抗震性能对每种算法进行了讨论。

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