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New Semi-active Multi-modal Vibration Control Using Piezoceramic Components

机译:利用压电陶瓷元件的新型半主动多模态振动控制

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Active vibration control using piezoelectric elements has been extensively studied due to the requirement for increasingly high performances. Semi-active control, such as Synchronized Switch Damping, is an alternative technique. It consists in switching a piezoelectric element to a specific circuit synchronously with the motion of the structure, unlike active control. This method requires very low power supply, but performances remain poor in the case of broad bandwidth excitation. This article proposes a new method which is a combination of the SSDI semi-active control and technique developed for active control and has low power supply requirements. It extends semi-active control to any type of excitation, while optimizing modal damping on several targeted modes. Experimental measurements carried out on a clamped free beam are presented and a significant damping on targeted modes is demonstrated.
机译:由于对越来越高的性能的要求,已经广泛研究了使用压电元件的主动振动控制。半主动控制(例如同步开关阻尼)是一种替代技术。与主动控制不同,它包括与结构的运动同步地将压电元件切换到特定电路。该方法需要非常低的电源,但是在宽带宽激励的情况下性能仍然很差。本文提出了一种新方法,该方法将SSDI半主动控制与为主动控制而开发的技术相结合,具有较低的电源要求。它可将半主动控制扩展到任何类型的励磁,同时在几种目标模式下优化模式阻尼。给出了在夹紧的自由梁上进行的实验测量,并证明了对目标模式的显着阻尼。

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