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Modular lightweight robot system for aircraft production using a generic OPC UA skill concept

Philip Koch, Parth Rawal, Nico Töpfer, Tim Haß, Christian Böhlmann, Wolfgang Hintze

Year
2023
Citations
5
Access
Open access

Abstract

Abstract There is a continuing trend in the aircraft industry to automate production. In order to be able to react to shortages of skilled workers, high order fluctuations and machine breakdowns, cost-effective, mobile and flexible systems are required to support the workers. This paper focuses on the integration of existing skill-based engineering concepts into production using standard OPC Unified Architecture interface, where production systems can be built quickly by simply interconnecting modules. The interconnected modules together form higher level subsystems enabling reusability of the individual modules as well as the assembled subsystems across several use cases. The approach is evaluated on a production related mobile robot system, whose task is to drive to the workstation, reference the component and drill holes in a vertical tail plane section of an aircraft. All devices from different suppliers contain skill-based modules based on standards defined by OPC Foundation and communicate via OPC UA-based Client/Server communication.

Keywords

ReusabilityModular designComponent (thermodynamics)Interface (matter)Embedded systemProduction (economics)RobotWorkstationEngineeringTask (project management)

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