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首页> 外文期刊>Journal of intelligent material systems and structures >Hardware-in-the-loop optimization of an active vibration controller in a flexible beam structure using evolutionary algorithms
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Hardware-in-the-loop optimization of an active vibration controller in a flexible beam structure using evolutionary algorithms

机译:使用演化算法的柔性梁结构中主动振动控制器的在环硬件优化

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摘要

In this study, active vibration control of a cantilevered flexible beam structure equipped with bonded piezoelectric sensor/actuators is investigated. The linear quadratic regulator technique together with an observer is adopted to design the controller as well as to provide the full-state feedback. Two different approaches are subsequently used for simultaneously integrated optimization of the controller and observer parameters. In the first approach, a linear experimental model of the system is obtained using identification techniques, and the optimization is then performed based on a computer simulation of the system. However, in the second approach, a hardware-in-the-loop optimization scheme is proposed and applied to automatically tune the parameters. In both cases, a hybrid metaheuristic algorithm called tabu continuous ant colony system is utilized to find the optimal controller and observer. The integrated performance is experimentally evaluated to demonstrate effectiveness of the proposed hardware-in-the-loop optimization method. Finally, a comparison is made between the frequency response of the current controller with a pole placement controller from the literature in order to assess the improvement achieved through hardware-in-the-loop optimization.
机译:在这项研究中,研究了装备有粘结压电传感器/执行器的悬臂柔性梁结构的主动振动控制。采用线性二次调节器技术和观察器来设计控制器并提供全状态反馈。随后将两种不同的方法用于控制器和观察者参数的同时集成优化。在第一种方法中,使用识别技术获得系统的线性实验模型,然后基于系统的计算机仿真执行优化。但是,在第二种方法中,提出了一种硬件在环优化方案,并将其应用于自动调整参数。在这两种情况下,都使用称为禁忌连续蚁群系统的混合元启发式算法来找到最佳控制器和观察者。对集成性能进行了实验评估,以证明所提出的硬件在环优化方法的有效性。最后,将电流控制器的频率响应与文献中的磁极放置控制器进行比较,以评估通过硬件在环优化实现的改进。

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