Home /Research /Precise hand-guiding of redundant manipulators with null space control for in-contact obstacle navigation
MANIPULATION

Precise hand-guiding of redundant manipulators with null space control for in-contact obstacle navigation

Mohammad Safeea, Pedro Neto, Richard Béarée

Year
2019
Citations
7

Abstract

Rand-guiding of collaborative redundant manipulators allows an unskilled user to interact and program the robot intuitively. Many industrial applications require precise positioning at the end-effector (EEF) level inside cluttered environments, where manipulator's redundancy is required. Yet, the potentialities of redundancy while hand-guiding at EEF level are not fully explored. This paper addresses the subject of precision in hand-guiding at EEF level while using the redundancy for in-contact obstacle navigation. In the presence of a contact with an obstacle, the proposed null space control method actuates in a way that the manipulator slides compliantly with its structure on the body of the obstacle while preserving the precision of the hand-guiding motion at EEF level. Force/torque (FT) data from a FT sensor mounted at the robot flange are the input for EEF precision hand-guiding while the torque data from the joints of the manipulator represent the contact between robot structure and obstacles. Experimental tests were carried out successfully using a KUKA iiwa industrial manipulator with 7 degrees of freedom (DOF). Where, the EEF is hand-guided on a straight line while the robot is sliding on the obstacle with its structure, results indicate the precision of the proposed method.

Keywords

Null (SQL)ObstacleComputer scienceSpace (punctuation)Control theory (sociology)Control (management)Artificial intelligenceControl engineeringEngineeringGeography

Related papers

Browse all MANIPULATION papers