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Feed-forward control of active variable stiffness systems for mitigating seismic hazard in structures

机译:主动变刚度系统的前馈控制以减轻结构中的地震危险

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摘要

In this paper we discuss a practical two-stage approach (design and operation) to the seismic control of structures equipped with active variable stiffness (AVS) systems, as a means to mitigate or eliminate resonance or near-resonance phenomena in structures due to seismic ground motion. During the design stage, past seismic events are processed to extract the characteristic frequency content against which the AVS-equipped structure is designed, using a conventional envelope spectrum approach. The motivation for the operation stage builds upon advances in early-warning systems that hold the promise of delivering the expected ground motion waveforms at sites equipped with AVS and at instances just prior to the first wave arrival. The working hypothesis for the operation stage is that notification of the incoming motion will be served to the AVS-equipped site so as to allow for a small but sufficient window for moving the hydraulics of the AVS system to compensate for the frequency content of the arriving seismic signal. Numerical results are presented for both design and operation stages of a prototype building under real past seismic events.
机译:在本文中,我们讨论了一种实用的两阶段方法(设计和操作),用于装备有主动可变刚度(AVS)系统的结构的地震控制,作为减轻或消除由于地震引起的结构中共振或近共振现象的一种手段地面运动。在设计阶段,使用常规的包络频谱方法,对过去的地震事件进行处理,以提取特征频率内容,并以此为基础设计配备AVS的结构。操作阶段的动机基于预警系统的进步,这些预警系统有望在配备AVS的站点以及在第一个波到达之前的实例中传递预期的地面运动波形。操作阶段的工作假设是,将向配备AVS的站点提供传入运动的通知,以便为移动AVS系统的液压系统留出一个很小但足够的窗口,以补偿到达的频率成分地震信号。给出了在真实过去地震事件下原型建筑的设计和运营阶段的数值结果。

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