Home /Research /A circular feature-based pose measurement method for metal part grasping
MANIPULATION

A circular feature-based pose measurement method for metal part grasping

Chenrui Wu, Zaixing He, Shuyou Zhang, Xinyue Zhao

Year
2017
Citations
21

Abstract

The grasping of circular metal parts such as bearings and flanges is a common task in industry. Limited by low texture and repeated features, the point-feature-based method is not applicable in pose measurement of these parts. In this paper, we propose a novel pose measurement method for grasping circular metal parts. This method is based on cone degradation and involves a monocular camera. To achieve higher measurement accuracy, a position-based visual servoing method is presented to continuously control an eye-in-hand, six-degrees-of-freedom robot arm to grasp the part. The uncertainty of the part's coordinate frame during the control process is solved by defining a fixed virtual coordinate frame. Experimental results are provided to illustrate the effectiveness of the proposed method and the factors that affect measurement accuracy are analyzed.

Keywords

Computer visionArtificial intelligenceComputer scienceGRASPProcess (computing)Position (finance)Visual servoingFrame (networking)Feature (linguistics)Point (geometry)

Related papers

Browse all MANIPULATION papers