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Integrated passive/active vibration absorber for multi-story buildings

机译:集成式被动/主动减震器,用于多层建筑

摘要

Passive isolator, active vibration absorber, and an integrated passive/active (hybrid) control are studied for their effectiveness in reducing structural vibration under seismic excitations. For the passive isolator, a laminated rubber bearing base isolator which has been studied and used extensively by researchers and seismic designers is considered. An active vibration absorber concept, which can provide guaranteed closed-loop stability with minimum knowledge of the controlled system, is used to reduce the passive isolator displacement and to suppress the top floor vibration. A three-story building model is used for the numerical simulation. The performance of an active vibration absorber and a hybrid vibration controller in reducing peak structural responses is compared with the passively isolated structural response and with absence of vibration control systems under the N00W component of El Centro 1940 and N90W component of the Mexico City earthquake excitation records. The results show that the integrated passive/active vibration control system is most effective in suppressing the peak structural acceleration for the El Centro 1940 earthquake when compared with the passive or active vibration absorber alone. The active vibration absorber, however, is the only system that suppresses the peak acceleration of the structure for the Mexico City 1985 earthquake.
机译:研究了无源隔离器,有源减振器和集成的无源/有源(混合)控制在降低地震激励下降低结构振动方面的有效性。对于无源隔离器,考虑了研究人员和地震设计者已经广泛研究和使用的叠层橡胶轴承基础隔离器。主动减振器的概念可以减少对隔离器的被动位移并抑制顶层振动,从而可以在不了解受控系统的情况下提供有保证的闭环稳定性。三层建筑模型用于数值模拟。在El Centro 1940的N00W分量和墨西哥城地震激发记录的N90W分量下,将主动减振器和混合振动控制器在降低峰值结构响应方面的性能与被动隔离的结构响应以及不存在振动控制系统的性能进行了比较。 。结果表明,与单独的被动或主动振动吸收器相比,集成的被动/主动振动控制系统在抑制El Centro 1940地震的峰值结构加速度方面最有效。但是,主动减振器是唯一能抑制1985年墨西哥城地震结构峰值加速度的系统。

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