首页 /研究 /Optimal Selection of Measurement Configurations for Stiffness Model Calibration of Anthropomorphic Manipulators
MANIPULATION

Optimal Selection of Measurement Configurations for Stiffness Model Calibration of Anthropomorphic Manipulators

Alexandr Klimchik, Yier Wu, Anatol Pashkevich, Stéphane Caro, Benoît Furet

发表年份
2012
引用次数
43

摘要

The paper focuses on the calibration of elastostatic parameters of spatial anthropomorphic robots. It proposes a new strategy for optimal selection of the measurement configurations that essentially increases the efficiency of robot calibration. This strategy is based on the concept of the robot test-pose and ensures the best compliance error compensation for the test configuration. The advantages of the proposed approach and its suitability for practical applications are illustrated by numerical examples, which deal with calibration of elastostatic parameters of a 3 degrees of freedom anthropomorphic manipulator with rigid links and compliant actuated joints.

关键词

CalibrationStiffnessCompensation (psychology)RobotControl theory (sociology)Computer scienceControl engineeringRobot calibrationSelection (genetic algorithm)Engineering

相关论文

查看 MANIPULATION 分类全部论文