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STATE DEPENDENT RICCATI EQUATION (SDRE) CONTROL METHOD APPLIED IN CANCELLATION OF A PARAMETRIC RESONANCE IN A MAGNETICALLY LEVITATED BODY

机译:状态依赖的里卡提方程(SDRE)控制方法在取消磁悬浮体内参数共振中的应用

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摘要

Here, a simplified dynamical model of a magnetically levitated body is considered. The origin of an inertial Cartesian reference frame is set at the pivot point of the pendulum on the levitated body in its static equilibrium state (ie, the gap between the magnet on the base and the magnet on the body, in this state). The governing equations of motion has been derived and the characteristic feature of the strategy is the exploitation of the nonlinear effect of the inertial force associated, with the motion of a pendulum-type vibration absorber driven, by an appropriate control torque [4]. In the present paper, we analyzed the nonlinear dynamics of problem, discussed the energy transfer between the main system and the pendulum in time, and developed State Dependent Riccati Equation (SDRE) control design to reducing the unstable oscillatory movement of the magnetically levitated body to a stable fixed point. The simulations results showed the effectiveness of the (SDRE) control design.
机译:在此,考虑了磁悬浮体的简化动力学模型。惯性直角坐标系的原点设置在处于其静态平衡状态(即,在此状态下,基座上的磁体与身体上的磁体之间的间隙)处的悬臂上的摆的枢轴点。推导了运动的控制方程,该策略的特征是利用惯性力的非线性效应,并通过适当的控制扭矩驱动摆式减振器的运动[4]。在本文中,我们分析了问题的非线性动力学,讨论了主系统与钟摆之间的能量传递,并开发了状态相关Riccati方程(SDRE)控制设计,以减少磁悬浮体的不稳定振动。一个稳定的固定点。仿真结果表明了(SDRE)控件设计的有效性。

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