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Implications of structural design on the effectiveness of active vibration control of floor structures

机译:结构设计对地板结构主动振动控制有效性的影响

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摘要

Active vibration control has shown great potential for reducing the response of floor structures and has the potential to realise significant material savings in slender designs through incorporation from the conceptual stage. However, different structural designs result in different modal properties, and these can significantly affect the effectiveness of an active vibration control implementation.This paper investigates the implications of these different structural designs. Two floor structures with known vibration serviceability issues are considered; both of these are fairly typical designs. Active control is then simulated on each floor in order to improve the response of the structure.A multipedestrian walking force model is developed and used to generate the response of each structure. This loading model is calibrated and verified using experimentally acquired data on the structures considered.It was found that the effectiveness of the control was localised to each structural panel, and therefore the structural design that yielded larger panels required fewer actuators to reduce the response over the entire structure. Copyright © 2013 John Wiley & Sons, Ltd.
机译:主动振动控制在减少地板结构的响应方面显示出巨大潜力,并且有可能通过从概念阶段开始就纳入细长设计中,从而显着节省材料。但是,不同的结构设计会导致不同的模态特性,并且这些特性会显着影响主动振动控制实施的有效性。本文研究了这些不同的结构设计的含义。考虑了两个具有已知振动适用性问题的地板结构;这两个都是相当典型的设计。然后在每个楼层上模拟主动控制以改善结构的响应。建立了多行人步行力模型,并将其用于生成每个结构的响应。使用有关结构的实验数据来校准和验证该加载模型,发现控制的有效性仅限于每个结构面板,因此产生更大面板的结构设计需要更少的执行器来减少响应。整个结构。版权所有©2013 John Wiley&Sons,Ltd.

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