Optimal structure control for earthquake resistance

Xianyang Yang, James D. Lee
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Abstract

This work developed the optimal and active control algorithms applicable to structural control for earthquake resistance. [Lewis, F. L., Vrabie, D. and Syrmos, V. L. [2012] Optimal Control (John Wiley & Sons)] developed a rigorous and comprehensive procedure for the derivation of an optimal control strategy based on the calculus of variation. This work is an application of Lewis’ formulation to the control of a structure for earthquake resistance. We developed a computer software which can be used to generate a dynamic model to simulate a planar structure and to construct the control law. This model also includes the tendon driven actuators, sensors and true history of earthquake excitation. The control law has two parts: (I) the feedback control which depends on the estimate state variables (Kalman filter) and (II) the record of the realistic earthquake excitation. The optimal control problem eventually leads to a two-point boundary value problem whose solution hinges on the knowledge of the entire history of the earthquake excitation. We employ true records of earthquake excitation as input. This approach enables one to solve the Riccati equations rigorously. Then, from the simulation results, one may study the relations between the control algorithm design and the characteristics (frequency, amplitude and duration) of earthquake excitation.
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结构抗震优化控制
本文开发了适用于结构抗震控制的最优主动控制算法。[Lewis,F.L.、Vrabie,D.和Syrmos,V.L.[2012]最优控制(John Wiley&Sons)]开发了一个严格而全面的程序,用于基于变分法推导最优控制策略。这项工作是Lewis公式在结构抗震控制中的应用。我们开发了一个计算机软件,可以用来生成一个动态模型来模拟平面结构并构造控制律。该模型还包括肌腱驱动的致动器、传感器和地震激励的真实历史。控制律分为两部分:(I)依赖于估计状态变量的反馈控制(卡尔曼滤波器)和(II)真实地震激励的记录。最优控制问题最终导致两点边值问题,其解取决于对地震激励的整个历史的了解。我们采用地震激励的真实记录作为输入。这种方法使人们能够严格求解Riccati方程。然后,从仿真结果中,可以研究控制算法设计与地震激励特性(频率、振幅和持续时间)之间的关系。
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来源期刊
Journal of Micromechanics and Molecular Physics
Journal of Micromechanics and Molecular Physics Materials Science-Polymers and Plastics
CiteScore
3.30
自引率
0.00%
发文量
27
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