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Designing equally fault-tolerant configurations for kinematically redundant manipulators

Rodney G. Roberts, Salman Siddiqui, Anthony A. Maciejewski

Year
2009
Citations
15

Abstract

In this article, the authors examine the problem of designing nominal manipulator Jacobians that are optimally fault-tolerant to multiple joint failures. In this work, optimality is defined in terms of the worst case relative manipulability index. Building on previous work, it is shown that for a robot manipulator working in three-dimensional workspace to be equally fault-tolerant to any two simultaneous joint failures, the manipulator must have precisely six degrees of freedom. A corresponding family of Jacobians with this property is identified. It is also shown that the two-dimensional workspace problem has no such solution.

Keywords

WorkspaceFault toleranceControl theory (sociology)Manipulator (device)Computer scienceWork (physics)Property (philosophy)RobotParallel manipulatorJoint (building)

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