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Active control of a rotating system subject to random torque input: case study

机译:随机转矩输入作用下旋转系统的主动控制:案例研究

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This study considers the effect of random torque characteristics on the active control of vibration of a slender flexible beam mounted on a compliant rotating hub. The optimal control scheme is developed to eliminate the need for sensor(s) placement at the beam. A modal state-space model of the beam-hub system dynamics is constructed from the first ten modes of vibration of the system. A reduced-order optimal observer is utilized to estimate the deflection of beam tip from measurements of the horizontal and vertical deflections of the hub. Two orthogonal actuators are used to manipulate the hub such that the relative motion between the hub and the tip of the beam is minimized. Simulation results are presented and discussed.
机译:这项研究考虑了随机扭矩特性对安装在柔顺旋转轮毂上的细长柔性梁的振动的主动控制的影响。开发了最佳控制方案,以消除在光束处放置传感器的需求。从系统的前十个振动模式构建了束-轮毂系统动力学的模态状态空间模型。降阶的最佳观察器用于根据轮毂的水平和垂直偏转的测量值估计波束尖端的偏转。使用两个正交的致动器来操纵轮毂,使得轮毂和梁的末端之间的相对运动最小化。给出并讨论了仿真结果。

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