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Force-responsive robotic assembly of transmission components

Wyatt S. Newman, Michael S. Branicky, H.A. Podgurski, Siddharth R. Chhatpar, Ling Huang, Jayashankar M. Swaminathan, Hao Zhang

Year
2003
Citations
42

Abstract

Assembly tasks involving large position uncertainties are unsuitable for use of position-controlled robots. To automate such tasks, the assembly system must be responsive to contact forces. Issues in addressing force-responsive automated assembly include contact stability, the degree of force responsiveness required for success, the speed of a successful implementation, and the means to program a force-responsive system to perform a given assembly task. We examine these issues for robotic assembly in the context of automotive transmission components. We report on an impedance-based low-level algorithm and its interface to higher-level strategies that exhibits gentle, fast and reliable assembly of our example components.

Keywords

Contact forceComputer scienceAutomotive industryContext (archaeology)Task (project management)RobotTransmission (telecommunications)Position (finance)Interface (matter)Component (thermodynamics)

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