Dominik Bork
Associate Prof. Dipl.-Wirtsch.Inf.Univ.
Dr.rer.pol.
Dominik Bork
- Email: dominik.bork@tuwien.ac.at
- Phone: +43-1-58801-194308
- Office: HG0206 (1040 Wien, Favoritenstrasse 11)
- About:
Dominik Bork is working as an Assistant Professor for Business Systems Engineering at TU Wien since July 2020. Prior to moving to TU Wien, he worked as a Postdoc at the University of Vienna. He received his Diploma in Information Science and his PhD (Dr. rer. pol.) from the University of Bamberg where he primarily worked on multi-view enterprise modeling and metamodeling.
During his academic career, he was visiting researcher at and is up to date active collaborator with the University of Technology Sydney, the Instituto Tecnologico Autonomo de Mexico, the University of Pretoria, Stockholm University, and the Ecolé de Mines d’Albi.
Dominik Bork is elected domain expert of the Special Interest Group on Modelling Business Information Systems of the German Informatics Society (GI).
- Orcid: 0000-0001-8259-2297
- Keywords: Conceptual Modelling, UML, Model Engineering, Artificial intelligence, object oriented software design, Enterprise Architecture, Process Engineering
- Roles: Associate Professor
Publications
Keywords:
Astract: When designing modeling languages, researchers and practitioners often take contradicting positions. While the former argue for formal soundness and precise specification, practitioners aim for more flexibility in using a modeling language, i.e., by adapting it to a specific project context. The same distinction applies to the differentiation between modeling tools and drawing tools. While the former enable model processing functionality and support modelers in creating only valid models, in practice, too often the latter tools (e.g., Visio or even PowerPoint) are used due to their ease of use and non-constraining nature. When aiming to introduce flexibility into modeling languages, one often needs to have metamodeling knowledge. Besides, changing the metamodel requires re-deployment of tools and hampers compatibility with previously created models. In this paper, we introduce the notion of modeling language jargons as a means to countervail these two contradicting positions. With such jargons, on-the-fly adaptation of modeling languages can be achieved by business users without requiring changes to the metamodel. To illustrate the conceptualization and use of modeling language jargons we report on the Fractal Enterprise Model (FEM) language and the experience of using the FEM tool in practice.
Bider, I., Perjons, E., & Bork, D. (2021). Towards On-The-Fly Creation of Modeling Language Jargons. In ICTERI´21: 17th International Conference on ICT in Education, Research, and Industrial Applications (pp. 142–157). CEUR-WS.org. http://hdl.handle.net/20.500.12708/55620
Panel Discussion: How to Build a Perfect Enterprise Modeling Method
Jolita RalytéDominik BorkManfred JeusfeldMarite KirikovaJanis StirnaKeywords:
Astract: This paper reports on the plenary panel discussion on "How to Build a Perfect Enterprise Modeling Method" held at the PoEM 2021 conference. The panel was charged with finding a pathway to the perfect enterprise modeling method. The panelists have a background in enterprise modeling and method engineering. So, the question is: Can method engineering help with designing a better enterprise modeling environment? The contributions in this paper should be regarded as a snapshot of our viewpoints at the time of the panel.
Ralyté, J., Bork, D., Jeusfeld, M., Kirikova, M., & Stirna, J. (2021). Panel Discussion: How to Build a Perfect Enterprise Modeling Method. In Proceedings of the Forum at Practice of Enterprise Modeling 2021 (PoEM-Forum 2021) (PoEM 2021) (pp. 78–87). CEUR-WS.org. http://hdl.handle.net/20.500.12708/55643
Identifying Scenarios to Guide Transformations from DEMO to BPMN
Marné De VriesDominik BorkDavid AveiroDavid GuizzardiRobert PerglHenderik ProperKeywords:
Astract: The heterogeneity in enterprise design stakeholders and models gen- erally demands for consistent and efficient transformations of enterprise design knowledge between different conceptual modelling languages. A systematic pro- cess and precise model transformation specifications are a prerequisite for realizing such transformations. The Design and Engineering Methodology for Organiza- tions (DEMO) approach represents the organization design of an enterprise in four linguistically based, semantically sound aspect models. The Business Pro- cess Model and Notation (BPMN) on the other hand enables more flexibility in creating models and benefits from wide adoption in industry, the execution of pro- cesses e.g., by simulations, and the availability of proper tooling. A transformation of DEMO models into BPMN models is thus desirable to avail of both, the seman- tic sound foundation of DEMO and the wide adoption and execution possibilities of BPMN. Previous research already developed some principles and practices for transforming DEMO models into BPMN models, based on DEMOSL 3.7. This study focuses on the latest DEMO language specification, DEMOSL 4.5, since we believe that more clarity is required to specify consistent, well-motivated trans- formation specifications. We present a list of main requirements for developing transformation specifications to transform concepts represented in a Coordination Structure Diagram and Process Structure Diagram of DEMO into corresponding concepts in a BPMN collaboration diagram. The article makes three contribu- tions: (1) Generic requirements for developing DEMO-to-BPMN transformation specifications; (2) Nine transformation scenarios that are validated by multiple demonstration cases; and (3) A comprehensive college case that demonstrates all transformation scenarios.
De Vries, M., & Bork, D. (2021). Identifying Scenarios to Guide Transformations from DEMO to BPMN. In D. Aveiro, D. Guizzardi, R. Pergl, & H. A. Proper (Eds.), Advances in Enterprise Engineering XIV (pp. 92–110). Springer Nature Switzerland AG 2021. https://doi.org/10.1007/978-3-030-74196-9_6
From Conceptual Models to Knowledge Graphs: A Generic Model Transformation Platform
Muhamed SmajevicDominik BorkKeywords:
Astract: Semantic processing of conceptual models is a focus of research since several years, bridging the disciplines of knowledge-based systems, conceptual modeling, and model-driven software engineering. With the uptake of Knowledge Graphs, the research in this area gained further momentum. In this paper, we introduce a generic and extensible platform that enables the automated transformation of conceptual models into Knowledge Graphs. The platform can transform any model created by a state-of-the-art metamodeling platform (EMF and ADOxx) into standardized Knowledge Graph representations like GraphML, RDF, and OWL. In the paper at hand, we introduce our platform and evaluate it with a corpus of 5.000 UML models that we transform into Knowledge Graphs and subsequently exemplify the rich functionalities enabled by the graph structure by an automated detection of UML model smells.
Smajevic, M., & Bork, D. (2021). From Conceptual Models to Knowledge Graphs: A Generic Model Transformation Platform. In 2021 ACM/IEEE International Conference on Model Driven Engineering Languages and Systems Companion (MODELS-C). ACM/IEEE, Austria. IEEE Xplore Digital Library. https://doi.org/10.1109/models-c53483.2021.00093
Towards an Ontology-Driven Approach for Digital Twin Enabled Governed IT Management
Henderik ProperDominik BorkGeert PoelsIlaria TiddiMaria MaleshkovaT. PellegriniVictor de BoerKeywords:
Astract: The Digital Transformation of our society requires IT infrastructures to be more agile, more adaptive, and more connected than ever. At the same time, the owners of such infrastructures are confronted with an increase in regulatory pressure (e.g., the GDPR). These developments put a lot of stress on IT management and governance. To enable IT management and governance to better deal with these challenges, we propose to digitally transform IT governance and management itself by using a Digital Twin based approach. In line with this, we aim to create on ontology-driven Digital Twin for Governed IT Management (DT4GITM) framework. The goal of this framework is to act as a reference architecture for a Digital Twin based infrastructure that connects three interrelated systems: the IT governance processes, the governed IT management processes, and the managed organizational IT assets. The core of the framework involves a generic Governed IT Management (GITM) Domain Ontology, which is planned to be operationalized by a Knowledge Graph based approach that realizes an integrated view on the heterogenous data streams originating from the IT governance and management processes, and the managed IT assets. In this paper, we start by outlining the planned DT4GITM framework and the pivotal role of the GITM Domain Ontology within this. We then elaborate our incremental, and scenario- and case-driven strategy towards the development of the framework as a whole, and the GITM Domain Ontology in particular. This is followed by the elaboration of a specific DT4GITM scenario which serves as a first proof of principle.
Proper, H. A., Bork, D., & Poels, G. (2021). Towards an Ontology-Driven Approach for Digital Twin Enabled Governed IT Management. In I. Tiddi, M. Maleshkova, T. Pellegrini, & V. de Boer (Eds.), Joint Proceedings of the Semantics co-located events: Poster&Demo track and Workshop on Ontology-Driven Conceptual Modelling of Digital Twins (SemanticsP&Ds 2021), Amsterdam and Online, September 6-9, 2021 (pp. 1–14). CEUR-WS.org. http://hdl.handle.net/20.500.12708/58493
Teaching
Seminar for Master Students in Software Engineering & Internet Computing
Semester: 2024W; Nr: 180.777; Type: SE; Hours: 1.0; Language: English; View on TISSResearch Seminar
Semester: 2024W; Nr: 188.446; Type: SE; Hours: 2.0; Language: if required in English; View on TISSLiterature Seminar for PhD Students
Semester: 2024W; Nr: 188.512; Type: SE; Hours: 2.0; Language: German; View on TISSModel Engineering
Semester: 2024W; Nr: 188.923; Type: VU; Hours: 4.0; Language: English; View on TISSBachelor Thesis for Informatics and Business Informatics
Semester: 2024W; Nr: 188.926; Type: PR; Hours: 5.0; Language: if required in English; View on TISSSoftware Engineering
Semester: 2024W; Nr: 194.020; Type: VU; Hours: 4.0; Language: German; View on TISSProject in Computer Science 1
Semester: 2024W; Nr: 194.145; Type: PR; Hours: 4.0; Language: if required in English; View on TISSProjects
JSON-basierte, web-natives Modellierungsframework für Model-Diffing
Name: JSONVerse; Title: JSON-basierte, web-natives Modellierungsframework für Model-Diffing; Begins On: 2024-07-01; Ends On: 2025-01-31; Context: Austrian Research Promotion Agency (FFG); View Project WebsiteTowards Low-Code Business App Development - ER2CDS
Name: ER2CDS; Title: Towards Low-Code Business App Development - ER2CDS; Begins On: 2024-01-01; Ends On: 2024-12-31; Context: valantic Business Technology & Transformatio GmbH; View Project WebsiteAutomatisiertes End-to-End-Testen von Cloud-basierten Modellierungswerkzeugen
Name: InnoScheckEclipsesource23; Title: Automatisiertes End-to-End-Testen von Cloud-basierten Modellierungswerkzeugen; Begins On: 2023-05-01; Ends On: 2024-04-30; Context: Austrian Research Promotion Agency (FFG); View Project WebsiteDiplomarbeitsbetreuung AI Readiness Assessment
Name: DA-EFS; Title: Diplomarbeitsbetreuung AI Readiness Assessment; Begins On: 2023-01-24; Ends On: 2024-01-23; Context: EFS Unternehmensberatung GesmbH; View Project WebsiteMFP 4.2 Advanced Analytics for Smart Manufacturing
Name: MFP 4.2; Title: MFP 4.2 Advanced Analytics for Smart Manufacturing; Begins On: 2022-10-01; Ends On: 2023-09-30; Context: CDP Center for Digital Production G; View Project WebsiteDigital Platform Enterprise
Name: DEMO; Title: Digital Platform Enterprise; Begins On: 2022-01-01; Ends On: 2024-12-31; Context: European Commission; View Project WebsiteTeam
Business Informatics Group, TU Wien
Professors
Christian Huemer
Ao.Univ.Prof. Mag.rer.soc.oec.Dr.rer.soc.oec.
Dominik Bork
Associate Prof. Dipl.-Wirtsch.Inf.Univ.Dr.rer.pol.
Gerti Kappel
O.Univ.Prof.in Dipl.-Ing.inMag.a Dr.in techn.
Henderik Proper
Univ.Prof. PhDResearchers
Aleksandar Gavric
Univ.Ass. MEng. B.Eng.Galina Paskaleva
Projektass.in Dipl.-Ing.inDipl.-Ing.in BSc
Marianne Schnellmann
Univ.Ass.in BSc MScMarion Murzek
Senior Lecturer Mag.a rer.soc.oec.Dr.in rer.soc.oec.
Marion Scholz
Senior Lecturer Dipl.-Ing.inMag.a rer.soc.oec.