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Fuzzy PID Control of Space Manipulator for Both Ground Alignment and Space Applications 被引量:20

Fuzzy PID Control of Space Manipulator for Both Ground Alignment and Space Applications
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摘要 Considering gravity change from ground alignment to space applications, a fuzzy proportional-integral-differential(PID)control strategy is proposed to make the space manipulator track the desired trajectories in different gravity environments. The fuzzy PID controller is developed by combining the fuzzy approach with the PID control method, and the parameters of the PID controller can be adjusted on line based on the ability of the fuzzy controller. Simulations using the dynamic model of the space manipulator have shown the effectiveness of the algorithm in the trajectory tracking problem. Compared with the results of conventional PID control,the control performance of the fuzzy PID is more effective for manipulator trajectory control. Considering gravity change from ground alignment to space applications, a fuzzy proportional-integral-differential(PID)control strategy is proposed to make the space manipulator track the desired trajectories in different gravity environments. The fuzzy PID controller is developed by combining the fuzzy approach with the PID control method, and the parameters of the PID controller can be adjusted on line based on the ability of the fuzzy controller. Simulations using the dynamic model of the space manipulator have shown the effectiveness of the algorithm in the trajectory tracking problem. Compared with the results of conventional PID control,the control performance of the fuzzy PID is more effective for manipulator trajectory control.
出处 《International Journal of Automation and computing》 EI CSCD 2014年第4期353-360,共8页 国际自动化与计算杂志(英文版)
基金 supported by National High Technology Research and Development Program of China(863 Program)(No.2011AA)
关键词 Space manipulator trajectory tracking ground alignment space applications fuzzy proportional-integral-differential (PID) gravity environment Space manipulator trajectory tracking ground alignment space applications fuzzy proportional-integral-differential (PID) gravity environment
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