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Representing Time-Continuous Behavior of Cyber-Physical Systems in Knowledge Graphs

Representing Time-Continuous Behavior of Cyber-Physical Systems in Knowledge Graphs

来源:Arxiv_logoArxiv
英文摘要

Time-continuous dynamic models are essential for various Cyber-Physical System (CPS) applications. To ensure effective usability in different lifecycle phases, such behavioral information in the form of differential equations must be contextualized and integrated with further CPS information. While knowledge graphs provide a formal description and structuring mechanism for this task, there is a lack of reusable ontological artifacts and methods to reduce manual instantiation effort. Hence, this contribution introduces two artifacts: Firstly, a modular semantic model based on standards is introduced to represent differential equations directly within knowledge graphs and to enrich them semantically. Secondly, a method for efficient knowledge graph generation is presented. A validation of these artifacts was conducted in the domain of aviation maintenance. Results show that differential equations of a complex Electro-Hydraulic Servoactuator can be formally represented in a knowledge graph and be contextualized with other lifecycle data, proving the artifacts' practical applicability.

Milapji Singh Gill、Tom Jeleniewski、Felix Gehlhoff、Alexander Fay

航空自动化基础理论自动化技术、自动化技术设备

Milapji Singh Gill,Tom Jeleniewski,Felix Gehlhoff,Alexander Fay.Representing Time-Continuous Behavior of Cyber-Physical Systems in Knowledge Graphs[EB/OL].(2025-06-08)[2025-07-01].https://arxiv.org/abs/2506.13773.点此复制

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