Affiliation:
1. Tampere University of Technology – FAST-Lab. P.O. 600, FI-33101, Tampere, Finland
2. WMG, University of Warwick, Coventry, CV4 7AL, United Kingdom
Abstract
Abstract
Accommodating frequent product changes in a short period of time is
a challenging task due to limitations of the contemporary engineering
approach to design, build and reconfigure automation systems. In
particular, the growing quantity and diversity of manufacturing
information, and the increasing need to exchange and reuse this
information in an efficient way has become a bottleneck. To improve
the engineering process, digital manufacturing and Product, Process
and Resource (PPR) modelling are considered very promising to compress
development time and engineering cost by enabling efficient design and
reconfiguration of manufacturing resources. However, due to
ineffective coupling of PPR data, design and reconfiguration of
assembly systems are still challenging tasks due to the dependency on
the knowledge and experience of engineers. This paper presents an
approach for data models integration that can be employed for coupling
the PPR domain models for matching the requirements of products for
assembly automation. The approach presented in this paper can be used
effectively to link data models from various engineering domains and
engineering tools. For proof of concept, an example implementation of
the approach for modelling and integration of PPR for a Festo test rig
is presented as a case study.
Subject
Electrical and Electronic Engineering,Computer Science Applications,Control and Systems Engineering
Cited by
16 articles.
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