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A decentralized response-dependent MR damper for controlling building structures excited by seismic load

机译:分散响应式MR阻尼器,用于控制地震荷载激发的建筑结构

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In this study, a decentralized algorithm for operating a semiactive MR damper was presented. The frictional force of the MR damper was determined based on the assumed shape functions using the displacement and velocity of the damper piston itself. The seismic response control performance of the MR damper was numerically and experimentally evaluated and compared to that of the passively or semiactively operated MR damper. The results from numerical analysis of SDOF system indicated that passively operated MR damper to have an optimal frictional force less than about 30% of the base shear force provided the smallest displacement response spectrum over all the periods. The proposed MR damper showed the better performance in reducing the absolute acceleration with the larger frictional force than the passive one. Also, the results from a three-storey benchmark building indicated that the proposed decentralized MR damper provided control performance equivalent to or better than the performance shown by the semiactive MR damper using a centralized LQR algorithm. Finally, the effectiveness of the proposed MR damper was verified through experimental tests of a full-scale five-storey steel structure with the MR dampers.
机译:在这项研究中,提出了一种用于运行半主动MR阻尼器的分散算法。 MR阻尼器的摩擦力是根据假定的形状函数使用阻尼器活塞本身的位移和速度确定的。通过数值和实验评估了MR阻尼器的地震响应控制性能,并将其与被动或半主动MR阻尼器的地震响应控制性能进行了比较。 SDOF系统数值分析的结果表明,被动式MR阻尼器的最佳摩擦力小于基本剪力的30%,在所有周期内提供了最小的位移响应谱。所提出的MR阻尼器在减小绝对加速度和更大的摩擦力方面表现出比被动阻尼器更好的性能。同样,来自三层基准建筑物的结果表明,所提出的分散式MR阻尼器提供的控制性能与使用集中式LQR算法的半主动式MR阻尼器所显示的性能相当或更好。最后,通过对带有MR阻尼器的全尺寸五层钢结构的实验测试,验证了所提出的MR阻尼器的有效性。

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