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Implementation of passive and active vibration control on an in-service footbridge

机译:在役行人天桥的被动和主动振动控制的实现

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The current trend toward lighter and slender pedestrian structures, with new aesthetic requirements and high-performance materials, has resulted in structures with increased susceptibility to vibration. Notable vibrations under human-induced excitations might appear, and the vibration serviceability requirements might not be accomplished. The Valladolid Science Museum Footbridge (Spain) is an example of a lively structure that might achieve excessive vertical acceleration under walking or running excitation. The control of excessive footbridge vibrations via passive and active devices is dealt with in this work. More specifically, this paper is concerned with the design and experimental implementation of a passive tuned mass damper (TMD) and an active mass damper (AMD) to mitigate human-induced vibrations on this in-service footbridge. The TMD, with a mass ratio of 1%, is designed by a numerical method based on H∞ controllers. The AMD consists of a proof-mass actuator, with a mass ratio of approximately 0.2%, controlled by a strategy based on acceleration feedback with a phase-lag network. The performance of both devices has been assessed. Copyright © 2011 John Wiley & Sons, Ltd.
机译:具有更新颖,更美观的外观和高性能材料的当前趋势,使行人结构更轻,更细长,从而使结构对振动的敏感性增加。在人为激励下可能会出现明显的振动,并且可能无法满足振动适用性要求。巴拉多利德科学博物馆人行桥(西班牙)是一个活泼建筑的示例,该建筑在步行或奔跑的刺激下可能会实现垂直加速度。这项工作涉及通过被动和主动设备控制过多的行人天桥振动。更具体地说,本文涉及被动调谐质量阻尼器(TMD)和主动质量阻尼器(AMD)的设计和实验实施,以减轻人为引起的在役人行天桥上的振动。通过基于H∞控制器的数值方法设计了质量比为1%的TMD。 AMD由质量质量执行器组成,质量执行器质量比约为0.2%,由基于具有相位滞后网络的加速度反馈的策略控制。两种设备的性能均已评估。版权所有©2011 John Wiley&Sons,Ltd.

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