Gerti Kappel
O.Univ.Prof.in Dipl.-Ing.in
Mag.a Dr.in techn.
Gerti Kappel
- Email: gertrude.kappel@tuwien.ac.at
- Phone: +43-1-58801-18870
- Office: HC0215 (1040 Wien, Favoritenstrasse 9)
- About:
Gerti Kappel is full professor at the Institute of Information Systems Engineering at TU Wien, chairing the Business Informatics Group. Prior to that, from 1993 to 2001, she was a full professor of computer science (database systems) and head of the Department of Information Systems at the Johannes Kepler University Linz.
From 2016 to 2019, she was a member of the dean’s team of the Faculty of Informatics responsible for research, diversity, and financial affairs. Since the beginning of 2020 she acts as the dean of the Faculty of Informatics at TU Wien.
Her current research interests include Model Engineering, Web Engineering, and Process Engineering, with a special emphasis on cyber-physical production systems. Striving for the unity of research and teaching, she co-authored and co-edited among others „UML@Work“ (dpunkt.verlag, 3rd ed, 2005), „UML@Classroom“ (Springer, 2015), and „Web Engineering“ (Wiley, 2006).
- Orcid: 0000-0002-4758-9436
- Keywords: Process Engineering, Data Engineering, Services Engineering, UML and XML, Business Process Management (BPM), Model Engineering, Workflow Management Systems (WFMS), Web Engineering, Object Orientation, Software Engineering
- Roles: Head of Services, Full Professor
Publications
An Introduction to Model Versioning
Petra KaufmannGerti KappelPhilip LangerMartina SeidlKonrad WielandManuel WimmerMarco BernardoVittorio CortellessaAlfonso PierantonioKeywords:
Astract: With the emergence of model-driven engineering (MDE), software models are considered as central artifacts in the software engineering process, going beyond their traditional use as sketches. In MDE, models rather act as the single source of information for automatically generating executable software. This shift poses several new research challenges. One of these challenges constitutes model versioning, which targets at enabling efficient team-based development of models. This compelling challenge induced a very active research community, who yielded remarkable methods and techniques ranging from model differencing to merging of models.
In this tutorial, we give an introduction to the foundations of model versioning, the underlying technologies for processing models and their evolution, as well as the state of the art in model versioning. Thereby, we aim at equipping students and researchers alike that are new to this domain with enough information for commencing to contribute to this challenging research area.
Kaufmann, P., Kappel, G., Langer, P., Seidl, M., Wieland, K., & Wimmer, M. (2012). An Introduction to Model Versioning. In M. Bernardo, V. Cortellessa, & A. Pierantonio (Eds.), Formal Methods for Model-Driven Engineering (pp. 336–398). Springer. https://doi.org/10.1007/978-3-642-30982-3_10
ERPEL: Enabling Seamless Ad-hoc Cross Enterprise Collaborations
Christian HuemerGerti KappelPhilipp LieglRainer SchusterHannes WerthnerMario TopfDieter MayrhoferMarco ZapletalPhilipp KrennKeywords:
Astract: In this paper we present the ERPEL approach towards executing on-the-fly e-business transactions between semantically enabled ERP systems. By on-the-fly e-business transactions we understand transactions that are conducted between companies, that are not yet in a partnership and dynamically find each other to engage in e-business transactions. Finding an appropriate business partner requires to know his business capabilities or in other words which products or services he offers. For this purpose, we develop a seamless integration of the product portfolios, held in the ERP systems, into the ERPEL registry. A search in the registry has to disclose the technical capabilities of a potential business partner to ensure interoperability. Overloaded business document standards and a variety of different communication protocols hamper an effective communication between enterprises. Thus, ERPEL follows a bottom-up approach starting from core documents with well-defined extension mechanisms. Furthermore, ERPEL comes with a default communication protocol specifically targeting SMEs. These unambiguous specifications allow the development of business service interfaces (BSI) that are integrated into the ERP systems.
Huemer, C., Kappel, G., Liegl, P., Schuster, R., Werthner, H., Topf, M., Mayrhofer, D., Zapletal, M., & Krenn, P. (2012). ERPEL: Enabling Seamless Ad-hoc Cross Enterprise Collaborations. In Proceedings of the Annual SRII Global Conference 2012. Annual SRII Global Conference 2012, San Jose, Non-EU. http://hdl.handle.net/20.500.12708/54193
On Formalizing EMF Modeling Operations with Graph Transformations
Petra KaufmannSebastian GabmeyerGerti KappelMartina SeidlWill TraczKeywords:
Astract: The development of software in accordance with the model-driven engineering paradigm places model transformations at a central position. Desirable yet contradicting properties of model transformations are user-friendliness as offered by by-demonstration approaches and formal conciseness as provided by algebraic graph transformations which is indispensable for verification tasks.
In this paper, we show how to unite the properties of the two different approaches. We employ the state-of-the-art by-demonstration environment EMO to prototype graph transformations by embedding the operations obtained from EMO in the formal framework of graph transformation theory.
Kaufmann, P., Gabmeyer, S., Kappel, G., & Seidl, M. (2012). On Formalizing EMF Modeling Operations with Graph Transformations. In W. Tracz (Ed.), ACM SIGSOFT Software Engineering Notes (p. 8). ACM. http://hdl.handle.net/20.500.12708/54205
Keywords:
Astract: With the introduction of fUML, an OMG standard defining the operational semantics of a subset of UML and the conforming virtual machine, UML models can be used not only for informal design sketching but also for completely building executable systems. Although this has been an important step for UML, the full potential of having executable UML models, such as enabling runtime analysis and adaptation, cannot be realized using the standardized virtual machine due to the lack of the adequate means for accessing important runtime information and controlling the execution of UML models.
In this paper, we aim at establishing the necessary basis to overcome this limitation. Therefore, we introduce extensions of the standardized fUML virtual machine in terms of a dedicated trace model, an event model, and a command API. We provide an open-source implementation of the proposed extensions, as well as a model debugger for UML models based on this implementation to demonstrate the feasibility of the presented concepts.
Mayerhofer, T., Langer, P., & Kappel, G. (2012). A runtime model for fUML. In Proceedings of the 7th Workshop on Models@run.time - MRT ’12. 7th International Workshop on Models@run.time (MRT 2012), Innsbruck, Austria. ACM. https://doi.org/10.1145/2422518.2422527
Guided Merging of Sequence Diagrams
Magdalena WidlArmin BierePetra KaufmannUwe EglyMarijn HeuleGerti KappelMartina SeidlHans TompitsKrzysztof CzarneckiGörel HedinKeywords:
Astract: The employment of optimistic model versioning systems allows multiple developers of a team to work independently on their local copies of a software model. The merging process towards one consolidated version obviously turns out to be error-prone and time-consuming when performed without any tool support. Recently, several sophisticated approaches for model merging have been presented. However, even for multi-view modeling languages like UML, which distribute the information on the modeled system over different views, these views
are merged independently of each other. Hence, inconsistencies are likely to be introduced into the merged model. We suggest to solve this problem by exploiting information stored in one view as constraint for the computation of a consolidated version of another view. More specifically, we demonstrate how state machines can guide the integration of parallel changes performed on a sequence diagram.
We give a concise formal description of this problem and suggest a translation to the satisfiability problem of propositional logic.
Widl, M., Biere, A., Kaufmann, P., Egly, U., Heule, M., Kappel, G., Seidl, M., & Tompits, H. (2012). Guided Merging of Sequence Diagrams. In K. Czarnecki & G. Hedin (Eds.), SLE 2012 - Pre-proceedings (pp. 163–182). http://hdl.handle.net/20.500.12708/54255
Teaching
Project in Computer Science 1
Semester: 2025S; Nr: 194.145; Type: PR; Hours: 4.0; Language: if required in English; View on TISSSeminar for Master Students in Business Informatics
Semester: 2024W; Nr: 180.779; 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 TISSScientific Research and Writing
Semester: 2024W; Nr: 193.052; Type: SE; Hours: 2.0; 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 TISSSustainability in Computer Science
Semester: 2024W; Nr: 194.155; Type: VU; Hours: 2.0; Language: English; View on TISSProjects
Digitale Kompetenzen @ Parlament
Name: DKP; Title: Digitale Kompetenzen @ Parlament; Begins On: 2021-04-01; Ends On: 2021-09-30; Context: Parlamentsdirektion; View Project WebsiteIFC-Roundtrip und Plangrafiken
Name: IFC-Roundtrip und Plangrafiken; Title: IFC-Roundtrip und Plangrafiken; Begins On: 2019-01-01; Ends On: 2020-06-30; Context: tbw solutions ZT GesmbH; View Project WebsiteVienna Informatics Living Lab
Name: Vienna Informatics Living Lab; Title: Vienna Informatics Living Lab; Begins On: 2018-08-01; Ends On: 2019-07-31; Context: Vienna Business Agency (WAW); View Project WebsiteMulti-Paradigm Modelling for Cyber-Physical Systems (MPM4CPS)
Name: MPM4CPS; Title: Multi-Paradigm Modelling for Cyber-Physical Systems (MPM4CPS); Begins On: 2014-10-01; Ends On: 2019-05-31; Context: European Cooperation in Science and Technology (COST); View Project WebsiteCOSIMO: Collaborative Configuration Systems Integration and Modeling
Name: COSIMO; Title: COSIMO: Collaborative Configuration Systems Integration and Modeling; Begins On: 2014-01-01; Ends On: 2017-05-30; Context: Vienna Business Agency (WAW); View Project WebsiteARTIST: Advanced software-based seRvice provisioning and migraTIon of legacy Software
Name: ARTIST; Title: ARTIST: Advanced software-based seRvice provisioning and migraTIon of legacy Software; Begins On: 2012-10-01; Ends On: 2015-09-30; Context: European Commission; View Project WebsiteDARWIN - Model-driven Development and Evolution of Semantic Infrastructures
Name: DARWIN; Title: DARWIN - Model-driven Development and Evolution of Semantic Infrastructures; Begins On: 2012-03-01; Ends On: 2015-02-28; Context: Austrian Research Promotion Agency (FFG); View Project WebsiteTROPIC: A Framework for Model Transformations on Petri Nets in Color
Name: TROPIC; Title: TROPIC: A Framework for Model Transformations on Petri Nets in Color; Begins On: 2009-03-01; Ends On: 2012-08-31; Context: Austrian Science Fund (FWF); View Project WebsiteAMOR: Adaptable Model Versioning
Name: AMOR; Title: AMOR: Adaptable Model Versioning; Begins On: 2009-02-01; Ends On: 2011-09-30; Context: SparxSystems Software GmbH; View Project WebsiteDevelopment of a WEB-based database for the global administration of CAN-Data
Name: Rosenbauer-DB; Title: Development of a WEB-based database for the global administration of CAN-Data; Begins On: 2008-09-01; Ends On: 2009-04-30; Context: Rosenbauer; View Project WebsiteModel-Driven Web Engineering net
Name: MDWEnet; Title: Model-Driven Web Engineering net; Begins On: 2006-12-01; Ends On: 2010-12-31; Context: Johannes Kepler Universität Linz; View Project WebsiteTRACK and TRADE: Creating a Data Mart for Floating Car Data
Name: TRACK™ Title: TRACK and TRADE: Creating a Data Mart for Floating Car Data; Begins On: 2006-10-01; Ends On: 2008-09-30; Context: European Commission; View Project WebsiteModelCVS: A Semantic Infrastructure for Model-based Tool Integration
Name: ModelCVS; Title: ModelCVS: A Semantic Infrastructure for Model-based Tool Integration; Begins On: 2006-01-01; Ends On: 2007-12-31; Context: ARIKAN Productivity Group GesmbH; View Project WebsiteZELESSA: An Enabler for Real-time Business Intelligence
Name: ZELESSA; Title: ZELESSA: An Enabler for Real-time Business Intelligence; Begins On: 2006-01-01; Ends On: 2007-06-30; Context: Österr. Nationalbibliothek; View Project WebsiteAdmina.at goes Austria
Name: Admina.at; Title: Admina.at goes Austria; Begins On: 2005-12-01; Ends On: 2007-09-30; Context: Federal Ministry of Science and Research (bm:wf); View Project WebsiteWomen's Postgraduate College for Internet Technologies
Name: WIT; Title: Women's Postgraduate College for Internet Technologies; Begins On: 2003-01-01; Ends On: 2007-12-31; 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.