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A novel approach of active control of structures based on the critically damped condition

机译:基于批判性抑制条件的结构主动控制的新方法

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In this research, the active control of structures based on the critically damped condition was proposed for reducing displacements and drifts of structures under seismic loading. In this approach, the second-order dynamic equation is converted into a first-order dynamic equation and a first-order derivative operator with the same constants, which satisfy critically damped conditions of the system. Based on this concept and using the defined performance index, the feedback gain matrix of the structural velocity is obtained. In the method of active control of structures based on the critically damped condition, the control force, which is the linear definition of the feedback gain matrix and the structural velocity, is exerted on the structure in each time step. Four types of numerical examples are examined to the comparison verification of active control of structures based on the critically damped condition with the classical linear optimal control, standard model predictive control, and other methods proposed in several references. Programming and calculations are done by Mathcad prime mathematical software.
机译:在本研究中,提出了基于临界阻尼条件的结构主动控制,以减少结构在地震荷载下的位移和漂移。在这种方法中,二阶动力学方程被转化为一阶动力学方程和一阶导数算子,它们具有相同的常数,满足系统的临界阻尼条件。基于这一概念,利用定义的性能指标,得到了结构速度的反馈增益矩阵。在基于临界阻尼条件的结构主动控制方法中,控制力是反馈增益矩阵和结构速度的线性定义,在每个时间步作用于结构。通过四类数值算例,比较验证了基于临界阻尼条件的结构主动控制与经典线性最优控制、标准模型预测控制以及其他一些文献中提出的方法的有效性。编程和计算由Mathcad prime数学软件完成。

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