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Nonlinear optimal control for reducing vibrations in civil structures using smart devices

机译:使用智能设备减少民用建筑振动的非线性最优控制

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The frequently excessive vibrations presented in civil structures during seismic events or service conditions may result in users' discomfort, or worst, in structures failure, producing economic and even human casualties. This work contributes in proposing the synthesis of a nonlinear optimal control strategy for semiactive structural control, with the main characteristic that the synthesis considers both the structure model and the semiactive actuator nonlinear dynamics, which produces a nonlinear system that requires a nonlinear controller design. The aim is to reduce the unwanted vibrations in the response of civil structures, by means of intelligent fluid semiactive actuator such as the Magnetorheological Damper (MRD), which is a device with a low level of power consumption. The civil structures for which the proposed control methodology can be applied are those admitting a state-dependent coefficient factorized representation model, such as buildings, bridges, among others. A scaled model of a three storey building is analyzed as a case study, whose dynamical response involves displacement, velocity and acceleration of each one of the storeys, subjected to the North-South component of the September 19th., 2017, Puebla-Morelos (7.1M), Mexico earthquake. The investigation rests on comparing the structural response over time for two different conditions: with no control device installed and with one MRD installed between the first floor and the ground, where a nonlinear optimal signal for the MRD input voltage is determined. Simulation results are presented to show the effectiveness of the proposed controller for reducing the building's dynamical response.
机译:在地震事件或使用条件下,民用建筑中经常出现的过度振动可能会导致使用者不舒服,或者最严重的是,建筑会出现故障,从而造成经济甚至人员伤亡。这项工作有助于提出用于半主动结构控制的非线性最优控制策略的综合,其主要特征是该综合考虑结构模型和半主动执行器的非线性动力学,从而产生了需要非线性控制器设计的非线性系统。目的是通过诸如磁流变阻尼器(MRD)之类的智能流体半主动致动器来减少土木结构响应中的有害振动,该设备是一种低能耗的设备。可以应用建议的控制方法的土木结构是那些接受基于状态的系数分解表示模型的土木结构,例如建筑物,桥梁等。作为案例研究,分析了三层建筑的比例模型,其动力响应涉及每一层的位移,速度和加速度,并受2017年9月19日的南北分量影响,Puebla-Morelos( 7.1M),墨西哥地震。该研究基于比较两种不同条件随时间变化的结构响应:未安装控制装置且在第一层和地面之间安装了一个MRD,从而确定了MRD输入电压的非线性最佳信号。仿真结果表明了所提出的控制器在降低建筑物动力响应方面的有效性。

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