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Control of a building complex with Magneto-Rheological Dampers and Tuned Mass Damper

机译:用磁流变阻尼器和调谐质量阻尼器控制建筑群

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Coupled building control is a viable method to protect tall buildings from seismic excitation. In this study, the semi-active control of a building complex is investigated for mitigating seismic responses. The building complex is formed of one main building and one podium structure connected through Magneto-Rheological (MR) Dampers and Tuned Mass Damper. The conventional semi-active control techniques require a primary controller as a reference to determine the desired control force, and modulate the input voltage of the MR damper by comparing the desired control force. The fuzzy logic directly determines the input voltage of an MR damper from the response of the MR damper. The control performance of the proposed fuzzy control technique for the MR damper is evaluated for the control problem of a seismically-excited building complex. In this paper, a building complex that include a 14-story main building and an 8-story podium structure is applied as a numerical example to demonstrate the effectiveness of semi-active control with Magneto-Rheological dampers and its comparison with the passive control with the Tuned Mass Damper and two uncoupled buildings and hybrid semi-active control including the Tuned Mass Damper and Magneto-Rheological dampers while they are subject to the earthquake excitation. The numerical results show that semi-active control and hybrid semi-active control can significantly mitigate the seismic responses of both buildings, such as displacement and shear force responses, and fuzzy control technique can effectively mitigate the seismic response of the building complex.
机译:耦合建筑物控制是保护高层建筑免受地震激发的可行方法。在这项研究中,研究了建筑群的半主动控制以减轻地震响应。该建筑群由一栋主楼和一栋通过磁流变(MR)阻尼器和调谐质量阻尼器连接的裙楼结构组成。常规的半主动控制技术需要主控制器作为确定所需控制力的参考,并通过比较所需控制力来调节MR阻尼器的输入电压。模糊逻辑根据MR阻尼器的响应直接确定MR阻尼器的输入电压。针对地震激励建筑群的控制问题,评估了所提出的用于MR阻尼器的模糊控制技术的控制性能。在本文中,以一个包含14层主楼和8层裙楼结构的建筑群为例,说明了磁流变阻尼器半主动控制的有效性以及与被动流变控制的比较。调谐质量阻尼器和两座独立的建筑物以及混合半主动控制装置,包括调谐质量阻尼器和磁流变阻尼器,它们都受到地震的激励。数值结果表明,半主动控制和混合半主动控制可以显着减轻两座建筑物的地震响应,例如位移和剪力响应,而模糊控制技术可以有效地减轻建筑物的地震响应。

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