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Multimode vibration control of a flexible structure using H/sub /spl infin//-based robust control

机译:使用基于H / sub / spl infin //的鲁棒控制的柔性结构的多模振动控制

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This paper presents the experimental results of a robust control scheme to suppress the vibration of a flexible structure. The feedback controller is designed using the H/sub /spl infin//-based robust control theory. For this purpose, a flexible bridge tower connected with a crane structure is considered to control its first five vibration modes using a static state feedback controller. A five-degrees-of-freedom reduced-order lumped parameter mass model is derived by neglecting high-frequency vibration modes. The neglected vibration modes constitute the unstructured system uncertainties. An attempt has been made to reduce the unmodeled uncertainties by placing actuators and/or sensors at the node points of a neglected mode. The H/sub /spl infin//-based control law is able to suppress the low-order vibration modes without any spillover instability due to neglected modes. The proposed control scheme is also shown to be robust against parameter variations. The performance of the control scheme is verified both by simulation and experimental studies.
机译:本文介绍了一种用于抑制柔性结构振动的鲁棒控制方案的实验结果。反馈控制器是使用基于H / sub / spl infin //的鲁棒控制理论设计的。为此,与起重机结构连接的柔性桥塔被认为可以使用静态反馈控制器来控制其前五个振动模式。通过忽略高频振动模式,得出了五自由度降阶集总参数质量模型。被忽略的振动模式构成了非结构化系统的不确定性。已经尝试通过将致动器和/或传感器放置在被忽略模式的节点处来减少未建模的不确定性。基于H / sub / spl infin //的控制定律能够抑制低阶振动模式,而不会由于忽略模式而引起任何溢出不稳定。所提出的控制方案还显示出对参数变化具有鲁棒性。仿真和实验研究均验证了该控制方案的性能。

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