Modular Relative Jacobian for Dual-Arms and the Wrench Transformation Matrix
File(s)Jamisola_CIS-RAM-2015.pdf (1.29 MB)
Accepted version
Author(s)
Jamisola, Rodrigo S
Kormushev, Petar
Caldwell, Darwin G
Ibikunle, Frank
Type
Conference Paper
Abstract
A modular relative Jacobian is recently derived and is expressed in terms of the individual Jacobians of stand-alone manipulators. It includes a wrench transformation matrix, which was not shown in earlier expressions. This paper is an experimental extension of that recent work, which showed that at higher angular end-effector velocities the contribution of the wrench transformation matrix cannot be ignored. In this work, we investigate the dual-arm force control performance, without necessarily driving the end-effectors at higher angular velocities. We compare experimental results for two cases: modular relative Jacobian with and without the wrench transformation matrix. The experimental setup is a dual-arm system consisting of two KUKA LWR robots. Two experimental tasks are used: relative end-effector motion and coordinated independent tasks, where a force controller is implemented in both tasks. Furthermore, we show in an experimental design that the use of a relative Jacobian affords less accurate task specifications for a highly complicated task requirement for both end-effectors of the dual-arm. Experimental results on the force control performance are compared and analyzed.
Date Issued
2015-04
Date Acceptance
2015-04-15
Citation
Proc. IEEE Intl Conf. on Cybernetics and Intelligent Systems (CIS) Robotics, Automation and Mechatronics (RAM)(CIS-RAM 2015), 2015
Publisher
IEEE
Journal / Book Title
Proc. IEEE Intl Conf. on Cybernetics and Intelligent Systems (CIS) Robotics, Automation and Mechatronics (RAM)(CIS-RAM 2015)
Copyright Statement
© 2015 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
Source
7th IEEE International Conference on Cybernetics and Intelligent Systems (CIS) and the 7th IEEE International Conference on Robotics, Automation and Mechatronics (RAM)
Publication Status
Published
Start Date
2015-07-15
Finish Date
2015-07-17
Coverage Spatial
Angkor Wat, Cambodia