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Active Vibration Control of a Convertible Structure based on a Linear Parameter-Varying Model

机译:基于线性参数变化模型的可转换结构的主动振动控制

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This paper investigates modelling and active vibration control (AVC) of ultra-lightweight convertible structures based on the elastic kinetic motion mechanism with a focus on civil and structural engineering applications. Model building is carried out in the linear parameter-varying (LPV) framework for the example of a convertible Fin Ray structure. In a first step local linear time-invariant (LTI) models are derived from a finite element model of the structure for different transformation states. On the basis of this collection of local LTI models, a grid-based LPV model is established. An AVC of multiple modes is implemented by means of a modal velocity feedback control. Single-input single-output (SISO) control design is carried out with the root locus method for the first and second mode using the same control input under the assumption of well separated eigenfrequencies. The implemented AVC is validated in simulation.
机译:本文研究基于弹性动力学运动机制的超轻质可转换结构的建模和主动振动控制(AVC),重点是土木和结构工程应用。以可转换Fin Ray结构为例,在线性参数变化(LPV)框架中进行模型构建。第一步,从结构的有限元模型针对不同的变换状态导出局部线性时不变(LTI)模型。基于此本地LTI模型的集合,建立了基于网格的LPV模型。借助于模态速度反馈控制,可以实现多种模式的AVC。在本征很好地分离的前提下,使用相同控制输入的第一模式和第二模式的根轨迹方法执行单输入单输出(SISO)控制设计。在仿真中验证了已实现的AVC。

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