首页> 外文期刊>Control and Intelligent Systems >A NEW HYBRID OPTIMAL-BASED ROBUST AND PROPORTIONAL-INTEGRAL-DERIVATIVE CONTROL FOR VIBRATION CONTROL OF A SEISMIC-EXCITED STRUCTURES
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A NEW HYBRID OPTIMAL-BASED ROBUST AND PROPORTIONAL-INTEGRAL-DERIVATIVE CONTROL FOR VIBRATION CONTROL OF A SEISMIC-EXCITED STRUCTURES

机译:一种新的混合优化的鲁棒和比例积分 - 积分控制,用于振动控制地震激发结构的振动控制

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摘要

This article proposes an experimental investigation of a four-storey structure that is connected to a shaking table. Also, the whale optimization algorithm (WOA) is used for the identification of the experimental structure parameters such as mass, stiffness and damping. Moreover, this article addresses a numerical study which is a productive approach based on a combination of two well-known and practical controllers, namely optimal-based robust control method and proportional-integral-derivative (PID) controller. The suggested hybrid optimal-based robust and PID controller (HORPID) is used for vibration attenuation of a four-degree-of-freedom smart structure equipped with an active tuned mass damper. By using an optimization process based on the WOA, the HORPID is designed. By taking into consideration four real data of earthquake ground motion, the performance of the HORPID is evaluated. After that, the results obtained from the simulations are compared with the results achieved by robust control. The simulation results show that the proposed HORPID is more effective than the earlier method in decreasing the amplitude of displacement and acceleration of each floor level.
机译:本文提出了一种与摇动台连接的四层结构的实验研究。而且,鲸鲸优化算法(WOA)用于识别实验结构参数,例如质量,刚度和阻尼。此外,本文解决了一个数字研究,这是一种基于两个众所周知和实用控制器的组合的高效方法,即基于最佳的鲁棒控制方法和比例 - 积分 - 导数(PID)控制器。建议的混合最优基于稳健和PID控制器(Horpid)用于振动衰减,其四维自由度智能结构配备有主动调谐质量阻尼器。通过使用基于WOA的优化过程,设计了Horpid。通过考虑四种地震地面运动的真实数据,评估Horpid的性能。之后,将从模拟获得的结果与通过稳健控制所实现的结果进行比较。仿真结果表明,所提出的Horpid比早期方法更有效地降低每个楼层的位移幅度和加速度。

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