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Fault-tolerant mating process of electric connectors in robotic wiring harness assembly systems

Jian Huang, Pei Di, Toshio Fukuda, Takayuki Matsuno

Year
2008
Citations
13

Abstract

To obtain a secured mating of electric connectors is one of the most important steps in a robotic wiring harness assembly system. Although there are plentiful results about complex peg-in-hole assembly problems, little work has been done with respect to this special issue. In many cases, mating connectors can be regarded as a hole search process of a multiple hole-in-peg problem. Because various faults might occur during the search, a reliable error recovery strategy is necessary in the mating task. In this paper, we model possible faults as ldquotrap regionsrdquo in the configure space (C-space) of the assembly. Fault isolation methods are obtained from elaborated force analyses as well. Based on these fault isolation results, error recovery strategies are proposed according to the fault models. A fault-tolerant mating of electric connectors can then be achieved. The effectiveness of the methods is finally confirmed by experiments.

Keywords

MatingProcess (computing)Cable harnessFault (geology)Task (project management)Fault toleranceComputer scienceIsolation (microbiology)Fault detection and isolationReliability engineering

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