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MANIPULATION

Identifying the Failure-Tolerant Workspace Boundaries of a Kinematically Redundant Manipulator

Rodney G. Roberts, Rodrigo S. Jamisola, Anthony A. Maciejewski

Year
2007
Citations
15

Abstract

In addition to possessing a number of other important properties, kinematically redundant manipulators are inherently more tolerant to locked-joint failures than non-redundant manipulators. However, a joint failure can still render a kinematically redundant manipulator useless if the manipulator is poorly designed or controlled. This paper presents a method for identifying a region of the workspace of a redundant manipulator for which task completion is guaranteed in the event of a locked-joint failure. The existence of such a region, called a failure-tolerant workspace, will be guaranteed by imposing a suitable set of artificial joint limits prior to a failure. Conditions are presented that characterize end-effector locations in this region. Based on these conditions, a method is presented that identifies the boundaries of the failure-tolerant workspace. Optimized failure-tolerant workspaces for a three degree-of-freedom planar robot are presented.

Keywords

WorkspaceComputer scienceMobile manipulatorRobotTask (project management)Redundancy (engineering)Serial manipulatorJoint (building)Manipulator (device)Fault tolerance

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