首页> 外文会议>Biennial Conference on Mechanical Vibration and Noise >VIBRATION CONTROL METHOD AND ADAPTABILITY FOR FLEXIBLE STRUCTURES WITH DISTRIBUTED PARAMETERS USING A HYBRID DYNAMIC ABSORBER
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VIBRATION CONTROL METHOD AND ADAPTABILITY FOR FLEXIBLE STRUCTURES WITH DISTRIBUTED PARAMETERS USING A HYBRID DYNAMIC ABSORBER

机译:振动控制方法及其采用混合动态吸收器具有分布式参数的柔性结构的适应性

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This paper examines the vibration control of a flexible structure using a hybrid dynamic absorber. A new method for modeling flexible structures with distributed parameters using a reduced-order model with lumped parameters is specified. Both prevention of spillover and physical correspondence at the modeling points are taken into consideration. Due to restrictions of controller design it is necessary to employ reduced-order models of flexible structures when using LQ control theory to control vibration. By ignoring higher mode orders model reduction may invite vibration instability called spillover. In order to prevent spillover nodes of higher-order vibration modes are selected as modeling points. The effectiveness of this method is demonstrated by applying vibration control to a flexible tower-like structure. In addition the robustness of the control system is tested by placing the sensors and absorbers at points different from those selected by the model.
机译:本文使用混合动态吸收器检查了柔性结构的振动控制。指定了使用具有总数参数的依次使用分布式参数来建模灵活结构的新方法。考虑到在建模点处预防溢出和物理对应。由于控制器设计的限制,在使用LQ控制理论控制振动时,必须采用柔性结构的缩小阶型模型。通过忽略更高的模式令,模型减少可能会邀请振动不稳定,称为溢出。为了防止溢出溢出节点的高阶振动模式被选择为建模点。通过将振动控制施加到柔性塔式结构来证明该方法的有效性。此外,通过将传感器和吸收器放置在模型中选择的那些点的点,通过将传感器和吸收器放置来测试控制系统的稳健性。

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