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Optimal trajectory planning for a space robot docking with a moving target via homotopy algorithms

Yuhe Chen, Layne T. Watson

Year
1995
Citations
13

Abstract

Abstract The mathematical formulation of optimal trajectory planning for a space robot docking with a moving target is derived. The calculus of variations is applied to the problem so that the optimal robot trajectory can be obtained directly from the target information without first planning the trajectory of the end‐effector. The nonlinear two‐point boundary value problem resulting from the problem formulation is solved numerically by a globally convergent homotopy algorithm. The algorithm guarantees convergence to a solution for an arbitrarily chosen initial guess. Numerical simulation for three examples demonstrates the approach. © 3995 John Wiley & Sons, Inc.

Keywords

RobotTrajectoryTrajectory optimizationHomotopyNonlinear systemMotion planningMathematicsConvergence (economics)Computer scienceMathematical optimization

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