Home /Research /Time-optimal and smooth constrained path planning for robot manipulators
MANIPULATION

Time-optimal and smooth constrained path planning for robot manipulators

Binggang Cao, G.I. Doods, G.W. Irwin

Year
2002
Citations
49

Abstract

In this paper a new approach to time-optimal and smooth constrained path (continuous path) planning for robot manipulators is presented. A suitable objective function to combine time-optimal and smooth trajectory planning is found. The optimization process involves first obtaining smooth and time-suboptimal joint paths by minimizing the objective function, and then contracting travelling time by scaling the resulting time intervals for time-optimal joint paths so that the resulting velocities or accelerations or joints at some knots of die paths are maximal within their limitations. The resulting joint paths are smooth, time-optimal with optimal velocity profiles and therefore suitable for robotic motion. The feasibility of this method is illustrated by simulation and experimental results with an RTX SCARA type robot.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

Motion planningPath (computing)Robot manipulatorComputer scienceRobotRobot kinematicsMathematical optimizationControl theory (sociology)Mobile robotArtificial intelligence

Related papers

Browse all MANIPULATION papers