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Adaptive control of structures under dynamic excitation using magnetorheological dampers: an improved clipped-optimal control algorithm

机译:磁流变阻尼器在动态激励下的结构自适应控制:一种改进的限幅最优控制算法

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This paper investigates the performance of magnetorheological (MR) dampers to mitigate the effect of earthquake loading on civil engineering structures. MR dampers are semi-active fluid dampers containing an MR fluid. They can generate large controllable damping forces by tuning the magnetic field applied to the fluid, which changes its viscosity. Their fast response time and low electric power requirements make them attractive for potential applications in earthquake engineering. In this study the behavior of a prototype MR damper was simulated computationally using the Bouc-Wen model. A new clipped-optimal control strategy, the improved clipped-optimal algorithm (ICA) control model, was developed and aims to reduce the acceleration response of a structure. It was implemented for a scaled three-story building in Simulink. The structural response to seven earthquakes was simulated and compared with two other established control algorithms as well as passive damping. The ICA control algorithm generated the largest reduction in acceleration and displacement response while keeping low the electric power requirements and the force generated by the damper.
机译:本文研究磁流变(MR)阻尼器的性能,以减轻地震荷载对土木工程结构的影响。 MR阻尼器是包含MR流体的半主动式流体阻尼器。它们可以通过调节施加到流体的磁场来产生大的可控制的阻尼力,从而改变流体的粘度。它们的快速响应时间和低电功率要求使其对于地震工程的潜在应用具有吸引力。在这项研究中,使用Bouc-Wen模型对MR阻尼器原型的行为进行了计算仿真。提出了一种新的剪裁最优控制策略,即改进的剪裁最优算法(ICA)控制模型,旨在降低结构的加速度响应。它是在Simulink的一幢三层建筑中实施的。模拟了对七个地震的结构响应,并将其与其他两个既定的控制算法以及被动阻尼进行了比较。 ICA控制算法在最大程度降低加速度和位移响应的同时,保持了较低的电力需求和减震器产生的力。

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