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Path planning of a free-floating space robot based on the degree of controllability 被引量:2
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作者 HUANG XingHong JIA YingHong XU ShiJie 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第2期251-263,共13页
An effective and more efficient path planning algorithm is developed for a kinematically non-redundant free-floating space robot(FFSR) system by proposing a concept of degree of controllability(DOC) for underactuated ... An effective and more efficient path planning algorithm is developed for a kinematically non-redundant free-floating space robot(FFSR) system by proposing a concept of degree of controllability(DOC) for underactuated systems. The DOC concept is proposed for making full use of the internal couplings and then achieving a better control effect, followed by a certain definition of controllability measurement which measures the DOC, based on obtaining an explicit and finite equivalent affine system and singular value decomposition. A simple method for nilpotent approximation of the Lie algebra generated by the FFSR system is put forward by direct Taylor expansion when obtaining the equivalent system. Afterwards, a large-controlla- bility-measurement(LCM) nominal path is searched by a weighted A* algorithm, and an optimal self-correcting method is designed to track the nominal path approximately, yielding an efficient underactuated path. The proposed strategy successfully avoids the drawback of inefficiency inherent in previous path-planning schemes, which is due to the neglect of internal couplings, and illustrative numerical examples show its efficacy. 展开更多
关键词 free-floating space robot(FFSR) underactuated system path planning degree of controllability controllability measurement nilpotent approximation weighted A* algorithm optimal self-correcting method
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STUDY ON CONTROLLABILITY AND OBSERVABILITY FOR THIN PLATE SYSTEM WITH PARAMETER UNCERTAINTY
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作者 Li Yiyang Ren Lihong Chen Guodong Liang Tianpei Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hong Kong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1998年第3期60-67,共8页
The controllability and observability analysis of thin plate system with parameter uncertainty is presented using the degree of controllability/observability and the robustness index. It provides a guidance to the des... The controllability and observability analysis of thin plate system with parameter uncertainty is presented using the degree of controllability/observability and the robustness index. It provides a guidance to the design of robust active vibration control for thin plate system. 展开更多
关键词 degree of controllability/observability Robustness index Active vibration control
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