The fourth industrial revolution (Industry 4.0) elevates the complexity and autonomy of industrial systems and engineering environments to levels not seen before. The novel challenges involve not only the software running on the partaking autonomous devices, but also architectural considerations and the technological infrastructure around the entire engineering process. In this paper, complementing the trends in industrial systems design, we propose an approach to toolchain modeling, i.e. an integrated specification for the interoperability of tools along with the holistic architectural framework, designed in the context of the Arrowhead Framework. In particular, we propose an intuitive, yet founded definition for toolchains and their mappings to a versatile engineering process model. Those definitions then serve as a basis for proposing our comprehensive toolchain modeling approach. The methodology is demonstrated using (simplified) real-world engineering case studies based on the Arrowhead Framework and platform.

Kulcsar G., Tatara M.S., Montori F. (2020). Toolchain Modeling: Comprehensive Engineering Plans for Industry 4.0. IEEE Computer Society [10.1109/IECON43393.2020.9254855].

Toolchain Modeling: Comprehensive Engineering Plans for Industry 4.0

Montori F.
2020

Abstract

The fourth industrial revolution (Industry 4.0) elevates the complexity and autonomy of industrial systems and engineering environments to levels not seen before. The novel challenges involve not only the software running on the partaking autonomous devices, but also architectural considerations and the technological infrastructure around the entire engineering process. In this paper, complementing the trends in industrial systems design, we propose an approach to toolchain modeling, i.e. an integrated specification for the interoperability of tools along with the holistic architectural framework, designed in the context of the Arrowhead Framework. In particular, we propose an intuitive, yet founded definition for toolchains and their mappings to a versatile engineering process model. Those definitions then serve as a basis for proposing our comprehensive toolchain modeling approach. The methodology is demonstrated using (simplified) real-world engineering case studies based on the Arrowhead Framework and platform.
2020
IECON Proceedings (Industrial Electronics Conference)
4541
4546
Kulcsar G., Tatara M.S., Montori F. (2020). Toolchain Modeling: Comprehensive Engineering Plans for Industry 4.0. IEEE Computer Society [10.1109/IECON43393.2020.9254855].
Kulcsar G.; Tatara M.S.; Montori F.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/818196
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