[1] Dubowsky S,Papadopoulos E G.The kinematics, dynamics and control of free-flying space robotic systems [J]. IEEE Trans on Robotics and Automation, 1993, 9 (5): 531-543.
[2] Ren Y Q, Ma B L. Adaptive control of space robot system based on back-stepping design [J]. Acta Aeronautica & Astronautica Sinica, 2007,28(2):490- 494(in Chinese). 任艳青, 马保离. 基于后退设计的空间机器人系统的自适应控制 [J]. 航空学报,2007,28(2):490-494.
[3] Xie J, Liu G L, Yan S Z, et al. Study on neural network adaptive control method for uncertain space manipulator [J]. Journal of Astronautics, 2010, 31(1):123-129(in Chinese). 谢箭,刘国良,颜世佐,等. 基于神经网络的不确定性空间机器人自适应控制方法研究 [J].宇航学报,2010, 31 (1): 123- 129.
[4] Chen L. Adaptive and robust composite control of coordinated motion of space robot system with prismatic joint //Proc of the 4th World Congress on Intelligent Control and Automation. Shanghai, China,2002,2:1255-1259.
[5] Feng B M, Ma G C, Wen Q Y, et al. Design of robust intelligent controller for space robot in task space [J]. Journal of Astronautics, 2007, 28(4):149-154(in Chinese). 丰保民,马广程,温奇咏,等.任务空间内空间机器人智能控制 [J].宇航学报,2007,28(4): 149-154.
[6] Lewis F L, Campos J, Selmic R. Neural-fuzzy control of industrial systems with actuator nonlinearities [M]. New York: University City Science Center, 2002: 23-30.
[7] Lu Y, Liu J K, Sun F C. Actuator nonlinearities compensation using RBF neural networks in robot control system //Proc 4th CESA Multi-Conference on Computation Engineering in Systems Application. Beijing,China, 2006,1:231-238.
[8] Wei C, Zhao Y, Tian H. Grasping control of space robot for capturing floating target [J]. Acta Aeronautica & Astronautica Sinica, 2010,31(3):632- 637(in Chinese). 魏承,赵阳,田浩.空间机器人捕获漂浮目标的抓取控制 [J].航空学报,2010,31(3):632- 637.
[9] 谢国伟. 空间机器人的运动控制研究 . 哈尔滨:哈尔滨工业大学, 2006.
[10] Xu Y S, Kanade T. Space robotics: dynamics and control [M]. Kluwer: Academic Publishers, 1992:32-57.
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