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Hybrid control system for greater resilience using multiple isolation and building connection

机译:使用多重隔离和建筑物连接的混合控制系统,具有更大的弹性

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摘要

An innovative hybrid control building system of multiple isolation and connection is proposed and investigated using both time history and input energy responses for various types of ground motions together with transfer functions. It is concerned that the seismic displacement response at the base-isolation layer of the existing base-isolated buildings may extremely increase under long-period and long-duration ground motions, which are getting great attention recently. In order to enhance the seismic performance of those base-isolated buildings, a novel hybrid system of multiple isolation and building connection is proposed and compared with other structural systems such as an independent multiple isolation system, a hybrid system of base isolation and building connection. Furthermore, the robustness of seismic responses of the proposed hybrid system for various types of ground motion is discussed through the comparison of various structural systems including non-hybrid systems. Finally, the optimal connection damper location is investigated using a sensitivity-type optimization approach.
机译:提出并研究了一种创新的混合控制建筑系统,该系统具有多重隔离和连接功能,同时针对各种地面运动的时程和输入能量响应以及传递函数进行了研究。人们担心,在长期和长期的地震动作用下,现有基础隔震建筑物的基础隔震层的地震位移响应可能会极大地增加,近来引起了人们的广泛关注。为了提高基础隔震建筑物的抗震性能,提出了一种新型的多重隔震与建筑物连接的混合系统,并与其他结构系统进行了比较,例如独立的多重隔震系统,基础隔震与建筑物连接的混合系统。此外,通过比较包括非混合系统在内的各种结构系统,讨论了所提出的混合系统对各种类型的地震动的地震响应的鲁棒性。最后,使用灵敏度类型优化方法研究了最佳连接阻尼器位置。

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