Digital Twin-based Condition Monitoring with Distributed Data Mapping of OPC UA and ISO 10303 STEP Standard
Tripathy, Aparajita; Chevuri, Rishyank; Tran, Tuan; Acharya, Sarthak; Deventer, Jan van; Paniagua, Cristina; Delsing, Jerker (2024-10-22)
Tripathy, Aparajita
Chevuri, Rishyank
Tran, Tuan
Acharya, Sarthak
Deventer, Jan van
Paniagua, Cristina
Delsing, Jerker
ACM
22.10.2024
Tripathy, A., Chevuri, R., Tran, T., Acharya, S., Deventer, J. V., Paniagua, C., & Delsing, J. (2024). Digital twin-based condition monitoring with distributed data mapping of OPC UA and ISO 10303 STEP standard. Proceedings of the 4th Eclipse Security, AI, Architecture and Modelling Conference on Data Space, 57–65. https://doi.org/10.1145/3685651.3685653
https://creativecommons.org/licenses/by/4.0/
© 2024 Copyright held by the owner/author(s). This work is licensed under a Creative Commons Attribution International 4.0 License.
https://creativecommons.org/licenses/by/4.0/
© 2024 Copyright held by the owner/author(s). This work is licensed under a Creative Commons Attribution International 4.0 License.
https://creativecommons.org/licenses/by/4.0/
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:oulu-202410306518
https://urn.fi/URN:NBN:fi:oulu-202410306518
Tiivistelmä
Abstract
A digital twin (DT), the digital counterpart of a physical entity, process, or system, is a pivotal innovation driving the manufacturing industry’s digital transformation. DT plays a significant role in product lifecycle management (PLM) and product condition monitoring. However, the diversity of systems and processes involved poses challenges in DT and data management within PLM, particularly regarding efficiency, standardized data mapping, and latency. The paper presents a solution architecture to address these challenges and contribute towards an efficient and cost-effective product lifecycle management system. The architecture focuses on DT’s data management and communication aspects, utilizing the edge-based, decentralized Eclipse Arrowhead Framework and EDMtruePLM (Enterprise Data Management True Product Lifecycle Management) for standardized data management and condition monitoring of products. Integrating the ISO 10303 STEP standard for data modeling and the Open Platform Communications Unified Architecture (OPC UA) standard for communication is emphasized, improving the contextual significance of the data and the system’s interoperability. A use case implementation is presented, where a fischertechnik assembly line is monitored, capturing sensor data through the PLC’s OPC UA server. The sensor data is then aligned with the STEP standard and stored in the EDMTruePLM database for monitoring.
A digital twin (DT), the digital counterpart of a physical entity, process, or system, is a pivotal innovation driving the manufacturing industry’s digital transformation. DT plays a significant role in product lifecycle management (PLM) and product condition monitoring. However, the diversity of systems and processes involved poses challenges in DT and data management within PLM, particularly regarding efficiency, standardized data mapping, and latency. The paper presents a solution architecture to address these challenges and contribute towards an efficient and cost-effective product lifecycle management system. The architecture focuses on DT’s data management and communication aspects, utilizing the edge-based, decentralized Eclipse Arrowhead Framework and EDMtruePLM (Enterprise Data Management True Product Lifecycle Management) for standardized data management and condition monitoring of products. Integrating the ISO 10303 STEP standard for data modeling and the Open Platform Communications Unified Architecture (OPC UA) standard for communication is emphasized, improving the contextual significance of the data and the system’s interoperability. A use case implementation is presented, where a fischertechnik assembly line is monitored, capturing sensor data through the PLC’s OPC UA server. The sensor data is then aligned with the STEP standard and stored in the EDMTruePLM database for monitoring.
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