Semantic Capability Model for the Simulation of Manufacturing Processes

Fuente: arXiv
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Hauptverfasser: Reif, Jonathan, Jeleniewski, Tom, Köcher, Aljosha, Frerich, Tim, Gehlhoff, Felix, Fay, Alexander
Format: Preprint
Veröffentlicht: 2024
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author Reif, Jonathan
Jeleniewski, Tom
Köcher, Aljosha
Frerich, Tim
Gehlhoff, Felix
Fay, Alexander
author_facet Reif, Jonathan
Jeleniewski, Tom
Köcher, Aljosha
Frerich, Tim
Gehlhoff, Felix
Fay, Alexander
contents Simulations offer opportunities in the examination of manufacturing processes. They represent various aspects of the production process and the associated production systems. However, often a single simulation does not suffice to provide a comprehensive understanding of specific process settings. Instead, a combination of different simulations is necessary when the outputs of one simulation serve as the input parameters for another, resulting in a sequence of simulations. Manual planning of simulation sequences is a demanding task that requires careful evaluation of factors like time, cost, and result quality to choose the best simulation scenario for a given inquiry. In this paper, an information model is introduced, which represents simulations, their capabilities to generate certain knowledge, and their respective quality criteria. The information model is designed to provide the foundation for automatically generating simulation sequences. The model is implemented as an extendable and adaptable ontology. It utilizes Ontology Design Patterns based on established industrial standards to enhance interoperability and reusability. To demonstrate the practicality of this information model, an application example is provided. This example serves to illustrate the model's capacity in a real-world context, thereby validating its utility and potential for future applications.
format Preprint
id arxiv_https___arxiv_org_abs_2408_08048
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Semantic Capability Model for the Simulation of Manufacturing Processes
Reif, Jonathan
Jeleniewski, Tom
Köcher, Aljosha
Frerich, Tim
Gehlhoff, Felix
Fay, Alexander
Software Engineering
Simulations offer opportunities in the examination of manufacturing processes. They represent various aspects of the production process and the associated production systems. However, often a single simulation does not suffice to provide a comprehensive understanding of specific process settings. Instead, a combination of different simulations is necessary when the outputs of one simulation serve as the input parameters for another, resulting in a sequence of simulations. Manual planning of simulation sequences is a demanding task that requires careful evaluation of factors like time, cost, and result quality to choose the best simulation scenario for a given inquiry. In this paper, an information model is introduced, which represents simulations, their capabilities to generate certain knowledge, and their respective quality criteria. The information model is designed to provide the foundation for automatically generating simulation sequences. The model is implemented as an extendable and adaptable ontology. It utilizes Ontology Design Patterns based on established industrial standards to enhance interoperability and reusability. To demonstrate the practicality of this information model, an application example is provided. This example serves to illustrate the model's capacity in a real-world context, thereby validating its utility and potential for future applications.
title Semantic Capability Model for the Simulation of Manufacturing Processes
topic Software Engineering
url https://arxiv.org/abs/2408.08048