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Almost global attitude stabilization of an orbiting satellite including gravity gradient and control saturation effects

机译:几乎全球态度稳定的轨道卫星,包括重力梯度和控制饱和效应

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Control saturation effects new results are presented for the problem of attitude stabilization of a rigid satellite in a circular orbit. Most prior results on this problem have addressed use of linear controllers to achieve local asymptotic stability; this paper presents controllers that achieve near global asymptotic stability. This is accomplished by using globally defined models that incorporate gravity gradient effects and a definition of the attitude of the satellite with respect to the rotating local vertical local horizontal coordinate frame. Lyapunov methods are used to analyze the closed loop properties, but their application takes into account the geometry of the tangent bundle TSO(3) on which the global dynamics evolve. Furthermore, the designed control law accommodates control saturation effects.
机译:控制饱和效应新结果呈现圆形轨道中刚性卫星的姿态稳定问题。大多数事先结果对这个问题解决了使用线性控制器来实现局部渐近稳定性;本文介绍了近全球渐近稳定性的控制器。这是通过使用全局定义的模型来完成的,该模型包含重力梯度效应和卫星相对于旋转局部垂直局部水平坐标框架的姿态的定义。 Lyapunov方法用于分析闭环属性,但它们的应用考虑了全球动态演变的切线束TSO(3)的几何形状。此外,设计的控制法适用于控制饱和效果。

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