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Semi-active controller design for vibration suppression and energy harvesting via LMI approach

机译:通过LMI方法抑制振动和收集能量的半主动控制器设计

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The vibration control plays an important role in energy harvesting systems. Compared to the active control, semi-active control is a more preferred alternative for practical use. Many different semi-active control strategies have been developed, among which LQ-clip, Skyhook and model predictive control are the most popular strategies in literatures. In this paper, a different control strategy that designs semi-active controller via LMI approach is proposed. Different from clipping the control input after controller construction like most existing control methods, the proposed method fulfills the semi-active control input feasibility constraints before the controller construction. The methodology is developed through LMI approach which leads to a stabilizing linear controller to ensure semi-active constraint and the pre-designed H_2 performance. An illustrative example, vibration control system of a tall building, is presented to show the efficiency of the method and validate the new approach.
机译:振动控制在能量收集系统中起着重要作用。与主动控制相比,半主动控制是更实用的替代选择。已经开发了许多不同的半主动控制策略,其中LQ-clip,Skyhook和模型预测控制是文献中最受欢迎的策略。本文提出了一种通过LMI方法设计半主动控制器的不同控制策略。与大多数现有控制方法一样,不同于在控制器构造之后裁剪控制输入,所提出的方法在控制器构造之前满足了半主动控制输入的可行性约束。该方法是通过LMI方法开发的,该方法可产生稳定的线性控制器,以确保半主动约束和预先设计的H_2性能。给出了一个示例性的例子,高层建筑的振动控制系统,以说明该方法的有效性并验证了该新方法。

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