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Cooperative game theory-based steering law design of a CMG system
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作者 HUA Bing NI Rui +2 位作者 zheng mohong WU Yunhua CHEN Zhiming 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2023年第1期185-196,共12页
Spacecraft require a large-angle manoeuvre when performing agile manoeuvring tasks, therefore a control moment gyroscope(CMG) is employed to provide a strong moment.However, the control of the CMG system easily falls ... Spacecraft require a large-angle manoeuvre when performing agile manoeuvring tasks, therefore a control moment gyroscope(CMG) is employed to provide a strong moment.However, the control of the CMG system easily falls into singularity, which renders the actuator unable to output the required moment. To solve the singularity problem of CMGs, the control law design of a CMG system based on a cooperative game is proposed. First, the cooperative game model is constructed according to the quadratic programming problem, and the cooperative strategy is constructed. When the strategy falls into singularity, the weighting coefficient is introduced to carry out the strategy game to achieve the optimal strategy. In theory, it is proven that the cooperative game manipulation law of the CMG system converges, the sum of the CMG frame angular velocities is minimized, the energy consumption is small, and there is no output torque error. Then, the CMG group system is simulated.When the CMG system is near the singular point, it can quickly escape the singularity. When the CMG system falls into the singularity, it can also escape the singularity. Considering the optimization of angular momentum and energy consumption, the feasibility of the CMG system steering law based on a cooperative game is proven. 展开更多
关键词 control moment gyroscopes(CMG) cooperative game theory steering laws
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基于改进迭代学习的参数不确定卫星姿态控制 被引量:3
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作者 柯晓曼 吴云华 +4 位作者 郑墨泓 李文星 杜津铭 华冰 陈志明 《系统工程与电子技术》 EI CSCD 北大核心 2021年第2期508-518,共11页
针对卫星运行时存在的诸如在轨组装升级后的卫星转动惯量变化较大且难以确定等问题,提出一种基于改进预测迭代学习控制的姿态敏捷机动控制方法。首先,以改进递阶饱和控制作为反馈控制器,实现原系统的稳定。其次,加入改进预测迭代学习控... 针对卫星运行时存在的诸如在轨组装升级后的卫星转动惯量变化较大且难以确定等问题,提出一种基于改进预测迭代学习控制的姿态敏捷机动控制方法。首先,以改进递阶饱和控制作为反馈控制器,实现原系统的稳定。其次,加入改进预测迭代学习控制作为前馈控制器,提高系统动态性能、鲁棒性与敏捷性。然后,采用基于混合执行机构的零运动操纵律提供高精度大力矩,并解决控制力矩陀螺奇异和飞轮饱和问题。最后,通过仿真证明所提控制器的优越性。 展开更多
关键词 姿态敏捷控制 不确定参数 递阶饱和控制 迭代学习 混合执行机构
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