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Spin-Axis Stabilization of an Underactuated Flexible Spacecraft Using Two Reaction Wheels

机译:使用两个反作用轮的欠驱动挠性航天器的自旋轴稳定

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The spin-axis stabilization of spacecraft belongs to the problem of partial stabilization for nonlinear dynamical system. In this paper the analysis of spin-axis stabilization of underactuated flexible spacecraft using two reaction wheels is presented. Using Euler-Poisson form to describe the equations of motion, the paper proves the global asymptotic stability of the closed-loop system by combining the Lyapunov direct method with the LaSalle's theorem, where the boundedness of the angular velocity for the underactuated axis is also analyzed. The mathematical simulation results verify the effectiveness of the proposed controller.
机译:航天器的自旋轴稳定属于非线性动力学系统的部分稳定问题。本文提出了利用两个反作用轮对欠驱动挠性航天器的自旋轴稳定性进行分析的方法。使用欧拉-泊松(Euler-Poisson)形式描述运动方程,通过将Lyapunov直接方法与LaSalle定理相结合,证明了闭环系统的全局渐近稳定性,其中还分析了欠驱动轴的角速度的有界性。数学仿真结果验证了所提出控制器的有效性。

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