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Reduced-order Modeling Method for Longitudinal Vibration Control of Propulsion Shafting

机译:推进轴承纵向振动控制的下降阶建模方法

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The propulsion shafting is one typically continuous, elastic and stepped body. To design an active controller for propulsion shafting by applying the modern control theory, an accurate reduced-order model with lumped parameters is required. This research concentrated on the reduced-order modelling method for longitudinal vibration control of a direct transfer marine propulsion shafting. The longitudinal vibration modes of the propulsion shafting were determined with one-dimension elastic wave approach based on its continuous model in advance. Taking into account of the unobservability and uncontrollability of mode nodes, the nodes of the neglected low highest mode were selected as locations of the reduced-order model mass points. By modifying mode shapes of the reduced-order model with sensitivity analysis, the reduced-order model can accurately represent the first low order modes of the continuous propeller-shafting system, enabling the effectiveness of controller design in the physical state space.
机译:推进轴系是一种通常连续,弹性和阶梯的体。通过应用现代控制理论设计用于推进轴承的主动控制器,需要具有集总参数的准确降低级模型。该研究集中在直接转移海洋推进轴承纵向控制的纵向振动控制下降阶建模方法。采用连续模型的一尺寸弹性波方法测定推进轴系的纵向振动模式。考虑到模式节点的不可忽视性和无法可控性,选择了被忽略的低最高模式的节点作为阶数模型质量点的位置。通过用灵敏度分析修改减小阶模型的模式形状,减少阶模型可以准确地代表连续螺旋桨式备件系统的第一低阶模式,从而实现了物理状态空间中的控制器设计的有效性。

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