首页> 外文期刊>International journal of structural stability and dynamics >Optimal Control for Footbridges' Vibration Reduction Based on Semiactive Control Through Magnetorheological Dampers
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Optimal Control for Footbridges' Vibration Reduction Based on Semiactive Control Through Magnetorheological Dampers

机译:基于半导体控制通过磁流变阻尼器的磁桥振动减振的最佳控制

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摘要

A footbridge is a structure designed for pedestrians or animals to cross roads, water or railways, safely. Modern ones are designed as slender and light structures to be more aesthetic and economic, but may lack enough stiffness and damping that might produce excessive vibrations under service conditions, overpassing comfort limits for users and compromise structural integrity. This work presents the synthesis of a nonlinear optimal control strategy for reducing vibrations in footbridges by means of using magnetorheological dampers. The proposed optimal controller considers both, the footbridge linear dynamics and the damper nonlinear dynamics, as the complete system to be controlled. For analysis purposes, the continuous structure of a footbridge is conveniently idealized as an N-degrees-of-freedom discretized model, such that it can be handled as an N-order system. Parameters from an actual footbridge are used to propose a discretized model system of 11 translational degrees of freedom and to analyze the system response as a case study. The dynamical response involves displacement, velocity and acceleration for different number of pedestrians crossing in groups. The investigation rests on comparing the structural response over time for two different conditions: with no control device installed and with one magnetorheological damper installed at the span center. Results obtained with the use of the proposed optimal controller show to be an effective way of reducing the structural motion response.
机译:行人天桥是一种为行人或动物而设计的结构,安全地穿越道路,水或铁路。现代的设计是更加审美和经济的细长和光线结构,但可能缺乏足够的僵硬和阻尼,这可能会在服务条件下产生过度振动,超越用户的舒适性限制并妥协结构完整性。该工作介绍了通过使用磁流变阻尼器来减少足桥中振动的非线性最佳控制策略的合成。所提出的最优控制器认为,行人桥线性动力学和阻尼器非线性动力学,作为要控制的完整系统。出于分析目的,人行桥的连续结构是方便地理想化为N - 自由度离散化模型的理想化,使得它可以作为n阶系统处理。来自实际行人天桥的参数用于提出11个平移自由度的离散模型系统,并以分析系统响应作为案例研究。动态响应涉及不同数量的行人分组的位移,速度和加速度。调查依赖于对两种不同条件的时间随着时间的推移进行比较:没有安装控制装置,并安装在跨度中心的一个磁流变器。通过使用所提出的最佳控制器显示的结果显示是减少结构运动响应的有效方法。

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