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A Mixed Real-time Algorithm for the Forward Kinematics of Stewart Parallel Manipulator

Sun’an WangWan Ya-min

2006中国电子科技:英文版Engineering被引 2

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摘要

Aimed at the real-time forward kinematics solving problem of Stewart parallel manipulator in the control course, a mixed algorithm combining immune evolutionary algorithm and numerical iterative scheme is proposed. Firstly taking advantage of simpleness of inverse kinematics, the forward kinematics is transformed to an optimal problem. Immune evolutionary algorithm is employed to find approximate solution of this optimal problem in manipulator's workspace. Then using above solution as iterative initialization, a speedy numerical iterative scheme is proposed to get more precise solution. In the manipulator running course, the iteration initialization can be selected as the last period position and orientation. Because the initialization is closed to correct solution, solving precision is high and speed is rapid enough to satisfy real-time requirement. This mixed forward kinematics algorithm is applied to real Stewart parallel manipulator in the real-time control course. The examination result shows that the algorithm is very efficient and practical.

引用本文(GB/T 7714)

Sun’an Wang, Wan Ya-min. A Mixed Real-time Algorithm for the Forward Kinematics of Stewart Parallel Manipulator[J]. 中国电子科技:英文版, 2006.

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