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Disturbance attenuation of asymmetric structure by LMI based optimal state feedback controller with saturated actuators

机译:基于LMI的具有饱和执行器的最优状态反馈控制器对非对称结构的扰动衰减。

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This paper is concerned with the design of linear matrix inequalities (LMIs) based optimal state-feedback controller design for seismically excited asymmetric structures (AS) having stiffness irregularities. The system is modelled in terms of mass, natural frequencies, damping ratio and eccentricities to easily obtain torsionally flexible (TF) model. A one storey, two-way asymmetric structural system is used to illustrate the effectiveness of the approach through simulations. The modelled system has bi-lateral and rotational degrees of freedom. Frequency responses show the effectiveness of proposed controller by means of a decrease in the peak values of translation at each resonance frequency. Moreover, the time domain simulation results, acquired by using real time-history data of San Francisco and El Centro Earthquakes also show that proposed controller is very effective in reducing vibration amplitudes of each direction by applicable control signals and guaranteeing the stability of the closed loop system.
机译:本文涉及基于线性矩阵不等式(LMI)的最优状态反馈控制器设计,该设计用于具有刚性不规则性的地震激励非对称结构(AS)。根据质量,固有频率,阻尼比和偏心度对系统进行建模,以轻松获得扭转挠性(TF)模型。使用一层两层非对称结构系统通过仿真来说明该方法的有效性。建模的系统具有双向和旋转自由度。频率响应通过减小每个共振频率处的平移峰值来显示所提出的控制器的有效性。此外,利用旧金山和埃尔森特罗地震的实时历史数据获得的时域仿真结果还表明,所提出的控制器对于通过应用控制信号来减小每个方向的振动幅度并确保闭环的稳定性非常有效。系统。

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