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首页> 外文期刊>Journal of Sound and Vibration >Integrated optimal design of vibration control system for smart beams using genetic algorithms
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Integrated optimal design of vibration control system for smart beams using genetic algorithms

机译:基于遗传算法的智能梁振动控制系统集成优化设计

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In this paper, the parameters of vibration control system of smart beams, including the placement and size of piezoelectric sensors and actuators (S/As) bonded on smart beams and the feedback control gains of the control system, have been simultaneously optimized for vibration suppression of beam structures. Since the sizes of the S/As are selected from a prescribed patch pool provided by the manufactures, the size design variable is then discrete, but the locations and feedback gains are continuous. Thus, the resulting optimization problem has discrete-continuous design variables which is difficult for the conventional optimization methods to solve. An integer-real-encoded genetic algorithm has thus been developed to search for the optimal placement and size of the piezoelectric patches as well as the optimal feedback control gains. The criterion based on the maximization of energy dissipation was adopted for the optimization of the control system. The optimal distributions of the piezoelectric patches based on specific controlled vibration modes have also been addressed. The results showed that the control effect could be significantly enhanced with appropriate distribution of piezoelectric patches and selection of feedback control gains, and meaningful observations have been obtained for practical design. (c) 2004 Elsevier Ltd. All rights reserved.
机译:本文同时优化了智能梁振动控制系统的参数,包括结合在智能梁上的压电传感器和致动器(S / As)的位置和尺寸以及控制系统的反馈控制增益,以抑制振动。梁结构。由于S / A的大小是从制造商提供的规定补丁池中选择的,因此大小设计变量是离散的,但是位置和反馈增益是连续的。因此,所产生的优化问题具有离散的连续设计变量,这是常规优化方法难以解决的。因此,已经开发了一种整数实数编码遗传算法,以搜索压电贴片的最佳位置和大小以及最佳反馈控制增益。采用基于能量消耗最大化的准则来优化控制系统。还解决了基于特定受控振动模式的压电贴片的最佳分布。结果表明,通过适当分布压电片和选择反馈控制增益,可以显着提高控制效果,并且在实际设计中获得了有意义的观察结果。 (c)2004 Elsevier Ltd.保留所有权利。

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