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Shaking table testing of a steel frame structure equipped with semi-active MR dampers: comparison of control algorithms

机译:装有半主动MR阻尼器的钢框架结构的振动台测试:控制算法的比较

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摘要

The effectiveness of the various control algorithms for semi-active structural control systems proposed in the literature is highly questionable when dealing with earthquake actions, which never reach a steady state. From this perspective, the paper summarizes the results of an experimental activity aimed to compare the effectiveness of four different semi-active control algorithms on a structural mock up representative of a class of structural systems particularly prone to seismic actions. The controlled structure is a near full scale 2-story steel frame, equipped with two semi-active bracing systems including two magnetorheological dampers designed and manufactured in Europe. A set of earthquake records has been applied at the base of the structure, by utilizing a shaking table facility. Experimental results are compared in terms of displacements, absolute accelerations and energy dissipation capability. A further analysis on the percentage incidence of undesired and/or unpredictable operations corresponding to each algorithm gives an insight on some factors affecting the reliability and, in turn, the real effectiveness of semi-active structural control systems.
机译:在应对从未达到稳态的地震作用时,文献中提出的半主动结构控制系统的各种控制算法的有效性令人质疑。从这个角度出发,本文总结了一个实验活动的结果,旨在比较四种不同的半主动控制算法在代表结构模型的结构模型上的有效性,这种结构模型特别易于发生地震作用。受控结构是近乎全尺寸的2层钢框架,配有两个半主动支撑系统,包括两个在欧洲设计和制造的磁流变阻尼器。通过使用振动台设施,在结构的底部应用了一组地震记录。对实验结果进行了位移,绝对加速度和能量耗散能力的比较。对与每种算法相对应的不希望的和/或不可预测的操作的发生率的进一步分析,可以洞悉影响半主动结构控制系统的可靠性并进而影响其有效性的一些因素。

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