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Robotic Assembly Planning and Control with Enhanced Adaptability

Lihui Wang, Mohammad Givehchi, Bernard Schmidt, Greg Adamson

Year
2012
Citations
11

Abstract

The dynamic market today requires manufacturing companies to possess high degree of adaptability and flexibility in order to deal with shop-floor uncertainties. Such uncertainties as missing tools, part shortage, job delay, rush-order and unavailability of resources, etc. happen more often in assembly operations. Targeting this problem, this research proposes a function block enabled approach to achieving adaptability and flexibility in assembly planning and control. In particular, this paper presents our latest development using a robotic mini assembly cell for testing and validation of a function block enabled system capable of assembly and robot trajectory planning and control. It is expected that a better adaptability can be achieved by this approach.

Keywords

AdaptabilityUnavailabilityFlexibility (engineering)Block (permutation group theory)EngineeringControl (management)Function (biology)RobotOrder (exchange)Control engineering

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