EDBT 2026 Demo / reviewers in the wild / expert
Omar Veledar
dblp:225/7907
· DBLP profile ↗
21ranked-venue papers
2as first author
16since 2021 · last 2025
0000-0002-8302-7721ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Software engineering, systems software and programming languages · 15 · 2 first-author · 12 since 2021Systems, architecture and hardware · 5 · 3 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 2 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | RaspiCar: Ensuring Safe Real-Time AI-Based Control for Embedded Autonomous Systems
Romana Blazevic, Fynn Luca Maaß, Christian Kofler, Omar Veledar, Georg Macher |
EuroSPI (2) | 4 |
| 2025 | Enhancing Automotive TARA: The Role of Attacker Motivation in Attack Feasibility Levels
Thomas Faschang, Omar Veledar, Georg Macher |
EuroSPI (1) | 2 |
| 2025 | Integrating Functional Mock-Up Units into Industrial Control Systems: Methodology and Insights on Real-Time Behavior
Thomas Krug, Omar Veledar, Georg Macher |
EuroSPI (2) | 2 |
| 2025 | Human Factors Assessment for Industry 5.0: Design and Implementation of a Human Measurement Device and Stress Inducing Device
Georg Macher, Thomas Brunner, Omar Veledar |
EuroSPI (2) | 3 |
| 2024 | Legal Uncertainties Regarding Cybersecurity for European Motorcycle OEMs
Thomas Faschang, Frank T. Zurheide, Omar Veledar, Georg Macher |
EuroSPI (2) | 3 |
| 2024 | Leveraging Digital Twins for Smart Hydropower: A Pathway to Industry 4.0
Thomas Krug, Omar Veledar, Georg Macher |
EuroSPI (1) | 2 |
| 2024 | Fostering Cyber Resilience in Europe: An In-Depth Exploration of the Cyber Resilience Act
Christoph Schmittner, Omar Veledar, Thomas Faschang, Georg Macher, Eugen Brenner |
EuroSPI (1) | 2 |
| 2023 | Open Innovation Cultures
Georg Macher, Rumy Narayan, Nikolina Dragicevic, Tiina Leino, Omar Veledar |
EuroSPI (2) | 5 |
| 2022 | Challenging Hierarchical Structure to Boost Technical Outcomes
Tiina Leino, Omar Veledar, Georg Macher, Jasmin Kniewallner, Eric Armengaud, Niina Koivunen |
EuroSPI | 2 |
| 2022 | Impact Maximisation of Collaborative Projects Through Informal Leadership
Tiina Leino, Omar Veledar, Georg Macher, Margherita Volpe, Eric Armengaud, Niina Koivunen |
PRO-VE | 2 |
| 2021 | DDI: A novel technology and innovation model for dependable, collaborative and autonomous systemsabstractDigital transformation fundamentally changes established practices in public and private sector. Hence, it represents an opportunity to improve the value creation processes (e.g., “industry 4.0”) and to rethink how to address customers' needs such as “data-driven business models” and “Mobility-as-a-Service”. Dependable, collaborative and autonomous systems are playing a central role in this transformation process. Furthermore, the emergence of data-driven approaches combined with autonomous systems will lead to new business models and market dynamics. Innovative approaches to reorganise the value creation ecosystem, to enable distributed engineering of dependable systems and to answer urgent questions such as liability will be required. Consequently, digital transformation requires a comprehensive multi-stakeholder approach which properly balances technology, ecosystem and business innovation. Targets of this paper are (a) to introduce digital transformation and the role of / opportunities provided by autonomous systems, (b) to introduce Digital Depednability Identities (DDI) - a technology for dependability engineering of collaborative, autonomous CPS, and (c) to propose an appropriate agile approach for innovation management based on business model innovation and co-entrepreneurship. Eric Armengaud, Daniel Schneider 0001, Jan Reich, Ioannis Sorokos, Yiannis Papadopoulos, Marc Zeller, Gilbert Regan, Georg Macher, Omar Veledar, Stefan Thalmann, Sohag Kabir |
DATE | 9 |
| 2021 | Measuring trust in automated driving using a multi-level approach to human factors*abstractAs the driving is shifting towards automation, the maximization of related benefits would profit from improved user acceptance of the new technology. Studies suggest a strong connection between acceptance and trust in technical solutions. We investigate the improvement of user trust to driving automation through demonstrations carried out in a sophisticated driving simulator. The study correlates subjective data with objective psychophysiological measurements. The multi-factorial and multivariate analysis of variance investigates the influence of learning effects and pre-experience with advanced driver assistance systems on trust. Results show improvement in trust through user interaction with a human-machine interface of the demonstrated AD system, hence illustrating the relevance of human-centered development processes. The conclusion is supported by the observation of driver cardiac signals. Philipp Clément, Herbert Danzinger, Omar Veledar, Clemens Könczöl, Georg Macher, Arno Eichberger |
DSD | 3 |
| 2021 | Programmable Systems for Intelligence in Automobiles (PRYSTINE): Final results after Year 3abstractAutonomous driving is disrupting the automotive industry as we know it today. For this, fail-operational behavior is essential in the sense, plan, and act stages of the automation chain in order to handle safety-critical situations on its own, which currently is not reached with state-of-the-art approaches.The European ECSEL research project PRYSTINE realizes Fail-operational Urban Surround perceptION (FUSION) based on robust Radar and LiDAR sensor fusion and control functions in order to enable safe automated driving in urban and rural environments. This paper showcases some of the key exploitable results (e.g., novel Radar sensors, innovative embedded control and E/E architectures, pioneering sensor fusion approaches, AI-controlled vehicle demonstrators) achieved until its final year 3. Norbert Druml, Anna Ryabokon, Rupert Schorn, Jochen Koszescha, Kaspars Ozols, Aleksandrs Levinskis, Rihards Novickis, Ethiopia Nigussie, Jouni Isoaho, Selim Solmaz, Georg Stettinger, Sergio E. Diaz, Mauricio Marcano, Jorge Villagra, Juan Medina, Martina Schwarz, Antonio Artuñedo, Mauro Comi, Rutger Beekelaar, Onur Özçelik, Elif Aksu Tasdelen, Yesim Gürbüz, Jan Saijets, Jukka Kyynäräinen, Dmitry Morits, Björn Debaillie, Maxim Rykunov, Joan Escamilla, Jarno Vanne, Tomi Korhonen, Kalle Holma, Eva-Maria Matzhold, Carlo Novara, Fabio Tango, Paolo Burgio, Giuseppe Carlo Calafiore, Milad Karimshoushtari, Emilie Boulay, Miguel Dhaens, Kylian Praet, Han Zwijnenberg, Henri Palm, David Aledo Ortega, Ercan Kalali, Tuomas Pensala, Arto Kyytinen, Morten Larsen, Omar Veledar, Georg Macher, Michael Lafer, Lorenzo Giraudi, Jakob Reckenzaun, Daniel Hammer, Naveen Mohan, Josef Schmid, Alfred Höß, Shai Ophir, Anand Dubey, Jonas Fuchs, Maximilian Lübke, Andrei Anghel, Nicolae-Catalin Ristea, Martin Törngren, Alua Musralina, Marlene Harter, Joseena Memadathil Jose, George Dimitrakopoulos 0001 |
DSD | 48 |
| 2021 | Balancing Exploration and Exploitation Through Open Innovation in the Automotive Domain - Focus on SMEs
Georg Macher, Omar Veledar |
EuroSPI | 2 |
| 2021 | Steering Drivers of Change: Maximising Benefits of Trustworthy IoT
Omar Veledar, Eric Armengaud, Leo Botler, Violeta Damjanovic-Behrendt, Christian Derler, Stefan Jaksic, Lukas Krammer, Christian Lettner, Georg Macher, Stefan Marksteiner, Martin Matschnig, Peter Priller, Sebastian Ramacher, Kay Römer, Christoph Schmittner, Christina Tiefnig, Heribert Vallant, Heinz Weiskirchner, Mario Drobics |
EuroSPI | 1 |
| 2021 | Experimentation of Cross-Border Digital Innovation Hubs (DIHs) Cooperation and Impact on SME Services
Margherita Volpe, Omar Veledar, Isabelle Chartier, Isabelle Dor, Fredy Ríos Silva, Jure Trilar, Csaba Király 0002, Gabriele Gaffuri, Sabine Hafner-Zimmermann |
PRO-VE | 2 |
| 2020 | Programmable Systems for Intelligence in Automobiles (PRYSTINE): Technical Progress after Year 2abstractAutonomous driving has the potential to disruptively change the automotive industry as we know it today. For this, fail-operational behavior is essential in the sense, plan, and act stages of the automation chain in order to handle safety-critical situations by its own, which currently is not reached with state-of-the-art approaches.The European ECSEL research project PRYSTINE realizes Fail-operational Urban Surround perceptION (FUSION) based on robust Radar and LiDAR sensor fusion and control functions in order to enable safe automated driving in urban and rural environments. This paper showcases some of the key results (e.g., novel Radar sensors, innovative embedded control and E/E architectures, pioneering sensor fusion approaches, AI controlled vehicle demonstrators) achieved until year 2. Norbert Druml, Björn Debaillie, Andrei Anghel, Nicolae-Catalin Ristea, Jonas Fuchs, Anand Dubey, Torsten Reissland, Maike Hartstem, Viktor Rack, Anna Ryabokon, Kaspars Ozols, Rihards Novickis, Aleksandrs Levinskis, Omar Veledar, Georg Macher, Johannes Jany-Luig, Selim Solmaz, Jakob Reckenzaun, Naveen Mohan, Shai Ophir, Georg Stettinger, Sergio E. Diaz, Mauricio Marcano, Jorge Villagra, Andrea Castellano, Rutger Beekelaar, Fabio Tango, Jarno Vanne, Kalle Holma, Oguz Icoglu, George Dimitrakopoulos 0001 |
DSD | 14 |
| 2020 | Automotive Engineering Skills and Job Roles of the Future?
Jakub Stolfa, Svatopluk Stolfa, Richard Messnarz, Omar Veledar, Damjan Ekert, Georg Macher, Utimia Madaleno |
EuroSPI | 4 |
| 2019 | PRYSTINE - Technical Progress After Year 1abstractAmong the actual trends that will affect society in the coming years, autonomous driving stands out as having the potential to disruptively change the automotive industry as we know it today. For this, fail-operational behavior is essential in the sense, plan, and act stages of the automation chain in order to handle safety-critical situations by its own, which currently is not reached with state-of-the-art approaches also due to missing reliable environment perception and sensor fusion. PRYSTINE will realize Fail-operational Urban Surround perceptION (FUSION) which is based on robust Radar and LiDAR sensor fusion and control functions in order to enable safe automated driving in urban and rural environments. In this paper, we detail the vision of the PRYSTINE project and we showcase the results achieved during the first year. Norbert Druml, Omar Veledar, Georg Macher, Georg Stettinger, Selim Solmaz, Jakob Reckenzaun, Sergio E. Diaz, Mauricio Marcano, Jorge Villagra, Rutger Beekelaar, Johannes Jany-Luig, Marta Maria Corredoira, Paolo Burgio, Christian Ballato, Björn Debaillie, Lars van Meurs, Andrei Sergeevich Terechko, Fabio Tango, Anna Ryabokon, Andrei Anghel, Oguz Icoglu, Sumeet S. Kumar, George Dimitrakopoulos 0001 |
DSD | 2 |
| 2019 | The Quest for Infrastructures and Engineering Methods Enabling Highly Dynamic Autonomous Systems
Georg Macher, Konrad Diwold, Omar Veledar, Eric Armengaud, Kay Römer |
EuroSPI | 3 |
| 2019 | Digital Twins for Dependability Improvement of Autonomous Driving
Omar Veledar, Violeta Damjanovic-Behrendt, Georg Macher |
EuroSPI | 1 |