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Simultaneous optimal design of the structural model for the semi-active control design and the model-based semi-active control

机译:半主动控制设计和基于模型的半主动控制的结构模型同时优化设计

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摘要

Various semi-active control methods have been proposed for vibration control of civil structures. In contrast to active vibration control systems, all semi-active control systems are essentially asymptotically stable because of the stability of general structural systems with structural damping and the energy dissipative nature of the semi-active control itself. In this study, by utilizing the aforementioned property on the stability of semi-active control systems, a structural model for the semi-active control design and a model-based semi-active control law are simultaneously designed so that the control performance of the resulting semi-active control system becomes good. The model for the control system design is assumed to be a linear parameter varying model with adjustable structural design parameters. The semi-active control law is based on the one step ahead prediction of the structural response of the designed model for the control system design. A genetic algorithm is adopted to obtain design parameters in the model for the control system design and the semi-active control law. Those design parameters are optimized so that the closed-loop system with the detailed dynamic model that accurately approximates the dynamic behavior of the real structural system and the semi-active control law obtained with the model for the control system design. The effectiveness of the present approach is shown with a simulation study. Copyright © 2013 John Wiley & Sons, Ltd.
机译:已经提出了各种半主动控制方法来控制民用结构的振动。与主动振动控制系统相反,由于具有结构阻尼的一般结构系统的稳定性以及半主动控制本身的耗能特性,所有半主动控制系统基本上都是渐近稳定的。在这项研究中,通过利用半主动控制系统稳定性的上述特性,同时设计了半主动控制设计的结构模型和基于模型的半主动控制律,从而控制了最终控制系统的性能。半主动控制系统变得很好。假定控制系统设计模型是具有可调结构设计参数的线性参数变化模型。半主动控制法则是基于对控制系统设计模型的结构响应的提前预测。采用遗传算法在模型中获得控制系统设计和半主动控制律的设计参数。对那些设计参数进行了优化,以使闭环系统具有详细的动力学模型,该模型可以精确地逼近实际结构系统的动力学行为,并且可以通过该模型获得用于控制系统设计的半主动控制律。仿真研究表明了本方法的有效性。版权所有©2013 John Wiley&Sons,Ltd.

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