1,899
Views
39
CrossRef citations to date
0
Altmetric
Research Article

Industrial ontologies for interoperability in agile and resilient manufacturing

ORCID Icon, , ORCID Icon & ORCID Icon
Pages 420-441 | Received 23 Apr 2021, Accepted 16 Sep 2021, Published online: 19 Oct 2021

References

  • Ameri, F., and D. Dutta. 2008. An Upper Ontology for Manufacturing Service Description, 651–661. doi:https://doi.org/10.1115/DETC2006-99600.
  • Ameri, F., and B. Kulvatunyou. 2019. “Modeling a Supply Chain Reference Ontology Based on a Top-Level Ontology.” Volume 1: 39th Computers and Information in Engineering Conference. doi:https://doi.org/10.1115/detc2019-98278
  • Ameri, F., E. Wallace, and R. Yoder. 2020, November. “Enabling Traceability in Agri-Food Supply Chains Using an Ontological Approach.” ASME 2020 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. doi:https://doi.org/10.1115/DETC2020-22672
  • Arp, R., B. Smith, and A. D. Spear. 2015. Building Ontologies with Basic Formal Ontology. Cambridge, Massachusetts: The MIT Press.
  • Aseeri, A., and P. Wongthongtham. 2011. “Community-Driven Ontology Evolution Based on Lightweight Social Networking in Oil and Gas Domain.” 5th IEEE International Conference on Digital Ecosystems and Technologies (IEEE DEST 2011), 197–202. doi:https://doi.org/10.1109/DEST.2011.5936625
  • Barbau, R., S. Krima, S. Rachuri, A. Narayanan, X. Fiorentini, S. Foufou, and R. D. Sriram. 2012. “OntoSTEP: Enriching Product Model Data Using Ontologies.” Computer-Aided Design 44 (6): 575–590. doi:https://doi.org/10.1016/j.cad.2012.01.008.
  • Benazzouz, T., A. Echchtabi, and A. Charkaoui. 2017. Using Ontology as a Decision Support System for Manage Risks in Medicines Supply Chain: Case of Public Hospitals in Morocco, Proceedings of the International Conference on Industrial Engineering and Operations Management, 282–292.
  • Bennett, M. 2013. “The Financial Industry Business Ontology: Best Practice for big Data.” Journal of Banking Regulation 14 (3): 255–268. doi:https://doi.org/10.1057/jbr.2013.13.
  • Blobel, B., D. Kalra, M. Koehn, K. Lunn, P. Pharow, P. Ruotsalainen, S. Schulz, and B. Smith. 2009. “The Role of Ontologies for Sustainable, Semantically Interoperable and Trustworthy EHR Solutions.” Studies in Health Technology and Informatics 150: 953–957.
  • Bodenreider, O. 2008. Ontologies and Data Integration in Biomedicine: Success Stories and Challenging Issues, 1–4.
  • Borgo, S., and P. Leitão. 2007. “Foundations for a Core Ontology of Manufacturing.” In Sharman R., Kishore R., Ramesh R. (eds) Ontologies. Integrated Series in Information Systems. Vol. 14, 751–775. Boston, MA: Springer.
  • Cao, S., K. Bryceson, and D. Hine. 2019. “An Ontology-Based Bayesian Network Modelling for Supply Chain Risk Propagation.” Industrial Management & Data Systems 119: 1691–1711.
  • Cargill, C. F. 2011. “Why Standardization Efforts Fail.” Journal of Electronic Publishing 14: 1.
  • Chapurlat, V., and N. Daclin. 2012. “System Interoperability: Definition and Proposition of Interface Model in MBSE Context.” IFAC Proceedings Volumes 45 (6): 1523–1528. doi:https://doi.org/10.3182/20120523-3-RO-2023.00174.
  • Chen, D, and N Daclin. 2006. “Framework for enterprise interoperability In Interoperability for Enterprise Software and Applications: Proceedings of the Workshops and the Doctorial Symposium of the Second IFAC/IFIP I‐ESA International Conference. London, UK.
  • Descotte, Y., and J.-C. Latombe. 1984. “GARI: an Expert System for Process Planning.” In Solid Modeling by Computers, edited by Marry S. Pickett and John W. Boyse, 329–346. Boston, MA: Springer.
  • Du, J., H. Jing, K.-K. R. Choo, V. Sugumaran, and D. Castro-Lacouture. 2019. “An Ontology and Multi-Agent Based Decision Support Framework for Prefabricated Component Supply Chain.” Information Systems Frontiers 22: 1467–1485.
  • Fiorentini, X., I. Gambino, V.-C. Liang, S. Rachuri, M. Mani, C. B. Nistir, C. Bock, C. M. Gutierrez, and J. M. Turner. 2007. An Ontology for Assembly Representation.
  • Fischer, K., P. Rosche, A. Trainer, A. B. Feeney, and T. D. Hedberg. 2015. Investigating the Impact of Standards-Based Interoperability for Design to Manufacturing and Quality in the Supply Chain.
  • Fox, M. S. 1992. “The Tove Project Towards a Common-Sense Model of the Enterprise.” International Conference on Industrial, Engineering and Other Applications of Applied Intelligent Systems, 25–34.
  • Fraga, A. L., M. Vegetti, and H. P. Leone. 2020. “Ontology-based Solutions for Interoperability among Product Lifecycle Management Systems: A Systematic Literature Review.” Journal of Industrial Information Integration 20: 100176. doi:https://doi.org/10.1016/j.jii.2020.100176.
  • Grubic, T., and I.-S. Fan. 2010. “Supply Chain Ontology: Review, Analysis and Synthesis.” Computers in Industry 61 (8): 776–786. doi:https://doi.org/10.1016/j.compind.2010.05.006.
  • Gruninger, M., and C. Menzel. 2003. “The Process Specification Language (PSL) Theory and Applications.” AI Magazine 3 (24): 63–74. https://doi.org/10.1609/aimag.v24i3.1719.
  • Hagedorn, T. J., B. Smith, S. Krishnamurty, and I. Grosse. 2019. “Interoperability of Disparate Engineering Domain Ontologies Using Basic Formal Ontology.” Journal of Engineering Design 30 (10–12): 625–654.
  • Hribernik, K., W. F. Vegte, D. van der Kiritsis, and K. Thoben. 2016. “Towards a Methodology for Selecting Product Usage Information Sources for the (Re-)Design of Product Service Systems.” 2016 International Conference on Engineering, Technology and innovation/IEEE lnternational Technology Management Conference (ICE/ITMC), 1–6. doi:https://doi.org/10.1109/ICE/ITMC39735.2016.9026119
  • Hummel, K., and S. L. Brooks. 1988. XPS-E Revisited: A New Architecture and Implementation Approach for an Automated Process Planning System. CAM-I Publication. DR-88-PP-02.
  • Khoshnevis, B., D. N. Sormaz, and J. Y. Park. 1999. “An Integrated Process Planning System Using Feature Reasoning and Space Search-Based Optimization.” IIE Transactions 31 (7): 597–616.
  • Kim, H. M., and M. Laskowski. 2018. “Toward an Ontology-Driven Blockchain Design for Supply-Chain Provenance.” Intelligent Systems in Accounting Finance & Management 25 (1): 18–27. doi:https://doi.org/10.1002/isaf.1424.
  • Kiritsis, D. 2016. Taking the LEAP: The Methods and Tools of the Linked Engineering and Manufacturing Platform (LEAP). Amsterdam, Netherlands: Academic Press.
  • Kulvatunyou, B., M. Lee, and M. Katsumi. 2020. An Analysis of the IOF Architecture: A Systems Integration Perspective. NIST Report. https://www.nist.gov/publications/analysis-iof-architecture-150-systems-integration-perspective.
  • Lemaignan, S., A. Siadat, J.- Dantan, and A. Semenenko. 2006. “MASON: A Proposal For An Ontology Of Manufacturing Domain.’ IEEE Workshop on Distributed Intelligent Systems: Collective Intelligence and Its Applications.
  • Madni, A. M., W. Lin, and C. C. Madni. 2001. “IDEONTM: An Extensible Ontology for Designing, Integrating, and Managing Collaborative Distributed Enterprises.” Systems Engineering 4 (1): 35–48.
  • Maheshwari, S., P. Gautam, and C. K. Jaggi. 2021. “Role of Big Data Analytics in Supply Chain Management: Current Trends and Future Perspectives.” International Journal of Production Research 59 (6): 1875–1900. doi:https://doi.org/10.1080/00207543.2020.1793011.
  • Matsokis, A., and D. Kiritsis. 2010. “An Ontology-Based Approach for Product Lifecycle Management.” Computers in Industry 61 (8): 787–797.
  • Mittal, S., M. A. Khan, D. Romero, and T. Wuest. 2019. “Smart Manufacturing: Characteristics, Technologies and Enabling Factors.” Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 233 (5): 1342–1361.
  • Pal, K. 2018. “Ontology-based web Service Architecture for Retail Supply Chain Management.” Procedia Computer Science 130: 985–990.
  • Pal, K. 2020. “Ontology-Assisted Enterprise Information Systems Integration in Manufacturing Supply Chain.” In Handbook of Research on Developments and Trends in Industrial and Materials Engineering, edited by Prasanta Sahoo, 96–122. Hershey, Pennsylvania: IGI Global.
  • Panetto, H., M. Dassisti, and A. Tursi. 2012. “ONTO-PDM: Product-Driven ONTOlogy for Product Data Management Interoperability Within Manufacturing Process Environment.” Advanced Engineering Informatics 26 (2): 334–348. doi:https://doi.org/10.1016/j.aei.2011.12.002.
  • Park, J. Y., and B. Khoshnevis. 1993. “A Real-Time Computer-Aided Process Planning System as a Support Tool for Economic Product Design.” Journal of Manufacturing Systems 12 (2): 181–193.
  • Psarommatis, F., A. Gharaei, and D. Kiritsis. 2020aa. “Identification of the Critical Reaction Times for re-Scheduling Flexible job Shops for Different Types of Unexpected Events.” Procedia CIRP 93: 903–908. doi:https://doi.org/10.1016/j.procir.2020.03.038.
  • Psarommatis, F., and D. Kiritsis. 2018. “A Scheduling Tool for Achieving Zero Defect Manufacturing (ZDM): A Conceptual Framework.” IFIP Advances in Information and Communication Technology 536: 271–278. doi:https://doi.org/10.1007/978-3-319-99707-0_34.
  • Psarommatis, F., and D. Kiritsis. 2021. “A Hybrid Decision Support System for Automating Decision Making in the Event of Defects in the Era of Zero Defect Manufacturing.” Journal of Industrial Information Integration.” Elsevier Inc 100263, doi:https://doi.org/10.1016/j.jii.2021.100263.
  • Psarommatis, F., G. May, P.-A. Dreyfus, and D. Kiritsis. 2020. “Zero Defect Manufacturing: State-of-the-art Review, Shortcomings and Future Directions in Research.” International Journal of Production Research 7543: 1–17. doi:https://doi.org/10.1080/00207543.2019.1605228.
  • Psarommatis, F., S. Prouvost, G. May, and D. Kiritsis. 2020. “Product Quality Improvement Policies in Industry 4. 0: Characteristics, Enabling Factors, Barriers, and Evolution Toward Zero Defect Manufacturing.” Frontiers in Computer Science 2 (August): 1–15. doi:https://doi.org/10.3389/fcomp.2020.00026.
  • Rosin, F., P. Forget, S. Lamouri, and R. Pellerin. 2020. “Impacts of Industry 4.0 Technologies on Lean Principles.” International Journal of Production Research 58 (6): 1644–1661. doi:https://doi.org/10.1080/00207543.2019.1672902.
  • Sala, R., G. Pezzotta, C. Sassanelli, F. Pirola, C. Bertelè, R. Neves-Silva, A. R. Campos, and S. Terzi. 2018. “The Integrated Design of Product-Service Systems Using the DIVERSITY Platform: An Application Case.” IFAC-PapersOnLine 51 (11): 1311–1316. doi:https://doi.org/10.1016/j.ifacol.2018.08.351.
  • Sarkar, A., and D. Šormaz. 2019. “Ontology Model for Process Level Capabilities of Manufacturing Resources.” Procedia Manufacturing 39: 1889–1898.
  • Simon, J., J. M. Fielding, and B. Smith. 2004. Using Philosophy to Improve the Coherence and Interoperability of Applications Ontologies: A Field Report on the Collaboration of IFOMIS and L&C.
  • Sinha, A., E. Bernardes, R. Calderon, and T. Wuest. 2020. Digital Supply Networks: Transform Your Supply Chain and Gain Competitive Advantage with Disruptive Technology and Reimagined Processes. New York City: McGraw Hill Professional.
  • Smith, B., F. Ameri, H. Cheong, D. Kiritsis, D. Sormaz, C. Will, and N. Otte. 2019, October 4. A First-Order Logic Formalization of the Industrial Ontologies Foundry Signature Using Basic Formal Ontology.
  • Smith, B., M. Ashburner, C. Rosse, J. Bard, W. Bug, W. Ceusters, L. J. Goldberg, K. Eilbeck, A. Ireland, and C. J. Mungall. 2007. “The OBO Foundry: Coordinated Evolution of Ontologies to Support Biomedical Data Integration.” Nature Biotechnology 25 (11): 1251–1255.
  • Smith, B., and W. Ceusters. 2010. “Ontological Realism: A Methodology for Coordinated Evolution of Scientific Ontologies.” Applied Ontology 5 (3–4): 139–188. doi:https://doi.org/10.3233/ao-2010-0079.
  • Song, F., G. Zacharewicz, and D. Chen. 2013. “An Ontology-Driven Framework Towards Building Enterprise Semantic Information Layer.” Advanced Engineering Informatics 27 (1): 38–50. doi:https://doi.org/10.1016/j.aei.2012.11.003.
  • Sormaz*, D. N., J. Arumugam, and S. Rajaraman. 2004. “Integrative Process Plan Model and Representation for Intelligent Distributed Manufacturing Planning.” International Journal of Production Research 42 (17): 3397–3417.
  • Šormaz, D., and A. Sarkar. 2019. “SIMPM–Upper-Level Ontology for Manufacturing Process Plan Network Generation.” Robotics and Computer-Integrated Manufacturing 55: 183–198.
  • Sormaz, D. N., A. Sarkar, and S. Ghosal. 2018. “IMPlanner-MAS: A Multiagent System for Distributed Manufacturing Process Planning.” Procedia Manufacturing 26: 1242–1254.
  • Šormaz, D., W. Terkaj, and A. Sarkar. 2020, November. “Progress on IOF’s Process and Production Planning Reference Ontology.” The 10th International Conference on Interoperability for Enterprise Systems and Applications. I-ESA, Tarbes, France.
  • Stenzhorn, H., S. Schulz, M. Boeker, and B. Smith. 2008. “Adapting Clinical Ontologies in Real-World Environments.” Journal of Universal Computer Science: J. UCS 14 (22): 3767–3780. doi:https://doi.org/10.3217/jucs-014-22-3767.
  • Tchouanguem Djuedja, J. F., F. H. Abanda, B. Kamsu-Foguem, P. Pauwels, C. Magniont, and M. H. & Karray. 2021. “An Integrated Linked Building Data System: AEC Industry Case.” Advances in Engineering Software 152: 102930. doi:https://doi.org/10.1016/j.advengsoft.2020.102930
  • Trade, G. 2013. INVEST,“INDUSTRIE 4.0: SMART MANUFACTURING FOR THE FUTURE.” December.
  • Uschold, M., M. King, S. Moralee, and Y. Zorgios. 1998. “The Enterprise Ontology.” The Knowledge Engineering Review 13 (1): 31–89.
  • Xu, L. D., E. L. Xu, and L. Li. 2018. “Industry 4.0: State of the art and Future Trends.” International Journal of Production Research 56 (8): 2941–2962. doi:https://doi.org/10.1080/00207543.2018.1444806.
  • Zdravković, M., H. Panetto, M. Trajanović, and A. Aubry. 2011. “An Approach for Formalising the Supply Chain Operations.” Enterprise Information Systems 5 (4): 401–421. https://doi.org/https://doi.org/10.1080/17517575.2011.593104.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.