Mauro Tempesta is a Senior Lecturer and Curriculum Coordinator for Security and Privacy at TU Wien's Faculty of Informatics. He teaches courses including 'Fundamentals of Security and Privacy' and 'Introduction to Security'. His research focuses on web security, browser mechanisms, firewall systems, and language-based security approaches. Tempesta's publications demonstrate expertise in analyzing modern web vulnerabilities and developing formal verification methods for security protocols. His recent work explores browser security mechanisms and same-site attacks, contributing to improved security frameworks for web applications.
Ulrich Schmid is a Full Professor and Head of the Research Unit for Embedded Computing Systems at TU Wien. He holds a position in the Faculty of Informatics and leads the department of Embedded Computing Systems (E191-02). His roles include Curriculum Coordinator for the Bachelor and Master programs in Computer Engineering, as well as the Excellence Program Bachelor with Honors. He is also the Chair of the Curriculum Commission for Computer Engineering and a Substitute Member of the Informatics Commission. His research focuses on fault-tolerant distributed algorithms, digital integrated circuits, and topology-based approaches to distributed systems. He coordinates major projects such as the FWF-funded DMAC (2019–2024) and ByzDEL (2020–2025), which integrate topological semantics and hybrid delay models for robust hardware design and distributed system analysis. Schmid has contributed to groundbreaking work in Byzantine fault tolerance, epistemic logic for system recovery, and real-time scheduling through collaborations with researchers like Chatterjee, Függer, and Rajsbaum. Notable awards include the 2018 Edsger W. Dijkstra Prize and the 2021 Principles of Distributed Computing Doctoral Dissertation Award. His research also bridges formal verification techniques with physical hardware implementations, exemplified by projects like HEX (a Byzantine-tolerant clock distribution system) and the Involution tool for timing analysis. Schmid actively contributes to academic governance, advancing rigorous education and research standards in computer engineering. His advising and grant work involve mentoring on fault-tolerant architectures and securing funding from agencies like FWF and the European Commission. Labs and teams under his leadership include the Embedded Computing Systems group, specializing in hardware-software co-design for dependable systems-on-chip, and collaborations with institutions like GSI Helmholtzzentrum and the University of Amsterdam.
Cezary Kaliszyk is a Professor in Theoretical Computer Science at the University of Melbourne. His research focuses on automated reasoning, formal methods, and learning for reasoning, particularly in the context of interactive theorem proving and formalized mathematics. He leads the ERC project 'FormalWeb3' and has been involved in several other significant research initiatives. Theoretical Computer Science Automated Reasoning Formal Methods Interactive Theorem Proving Machine Learning for Theorem Proving Formalized Mathematics Proof Guidance Learning for Reasoning His research explores the integration of machine learning techniques with formal reasoning systems to enhance automation in theorem proving. This includes developing systems like CoqHammer and Tactician, advancing premise selection, proof guidance, and learning-based proof search strategies. His work bridges logical foundations with practical AI-driven tools for formal verification. The recent publications demonstrate a consistent focus on advancing automated and interactive theorem proving through learning techniques, formalization of mathematical concepts (like surreal numbers), and improving reasoning systems (e.g., Prover9, tableaux methods). There is a strong emphasis on practical system development, formalization projects, and learning-based enhancements to reasoning. ERC project 'FormalWeb3' - Principal Investigator Cost Action EuroProofNet - WG5 Leader until 2024 FWF project P26201 - developing HOL(y)Hammer Other projects: JSPS P10044, NWO MathWiki, SURF WebDed, ProofWeb He has advised several PhD students to completion, including Michael Färber, Thibault Gauthier, Yutaka Nagashima, Stanisław Purgał, and Liao Zhang, and is currently supervising Daniel Ranalter and Neil Vyas. He has not received any explicitly mentioned scientific awards in the provided text. His work involves leadership in collaborative systems such as ProofWeb and HOL Import, and participation in major formalization efforts including the Mizar library integration with Isabelle. He is actively involved in the development of tool ecosystems for formal mathematics and automated reasoning.
Anastassiya Tchaikovsky is a postdoctoral researcher at the Institute of Analytical Chemistry, Department of Natural Sciences and Sustainable Resources, University of Natural Resources and Life Sciences, Vienna (BOKU). She holds a PhD in analytical chemistry and has an extensive research background in elemental and isotopic analysis, particularly using ICP-MS techniques. Her work spans food authentication, environmental forensics, and trace metal speciation. Her research interests include: Inductively Coupled Plasma Mass Spectrometry (ICP-MS) Chemometrics and multivariate data analysis Isotopic and elemental fingerprinting for provenance determination Metrology and method validation Separation techniques coupled to mass spectrometry Applications in food science, ecology, and human health Her recent publications demonstrate a strong trend toward interdisciplinary applications of analytical chemistry, particularly in verifying the geographical origin of food products (e.g., carrots, caviar, fish) using combined isotopic, elemental, and metabolomic fingerprints. She frequently employs chemometric modeling and data fusion techniques to enhance discrimination power. Her work also extends to biomedical applications, such as iron metabolism in neurodegenerative diseases and lead detoxification. She has received multiple scientific awards, including: Scholarship for a postdoc mentoring program (2019) Best talk award at DocDay, Tulln (2014) ESF-Studienabschluss scholarship (2013) Merkur scholarship from TU Vienna (2013) Best student lecture award at ICPMS Anwendertreffen (2012) Science scholarship from TU Vienna (2012) She has been involved in several research projects funded by the European Commission, Austrian federal and local governments, and private institutions. Her collaborative work includes advising on fish migration, caviar traceability, and citizen science initiatives like IsoPROTECT. She actively presents her research at international conferences and contributes to knowledge transfer in food safety and analytical methodology. She is affiliated with the Institute of Analytical Chemistry at BOKU and has no listed advisees, though she collaborates extensively with senior researchers and interdisciplinary teams.
Manuel Wimmer is a Full Professor and Head of the Department of Business Informatics – Software Engineering at Johannes Kepler University Linz, Austria. He also serves as the Program Director for the Business Informatics master's program since 2019. His academic leadership extends to representing JKU Linz in the AutomationML society and leading significant research initiatives. Dr. Wimmer received his Ph.D. and Habilitation from TU Wien. His academic journey includes: Research associate at the University of Malaga, Spain Visiting professor at the University of Marburg, Germany Visiting professor at TU Munich, Germany Assistant professor at the Business Informatics Group (BIG), TU Wien, Austria Professor Wimmer's research focuses on Model-Driven Software Engineering and its applications, particularly in the emerging field of Digital Twins . His work bridges theoretical foundations with practical industrial applications, with special emphasis on model transformations, runtime modeling, and the integration of artificial intelligence techniques into model-driven approaches. More recently, he has been exploring the intersection of model-driven engineering with quantum computing, investigating how modeling principles can be applied to quantum software development. His recent publications reveal a strong trend toward Digital Twin engineering, with approximately 40% of his 2023-2025 publications focusing on various aspects of Digital Twin technology. Another significant strand of his work involves the application of AI and machine learning techniques to enhance model-driven engineering processes. The emergence of quantum software engineering as a research direction is also notable in his most recent publications, demonstrating his ability to identify and explore cutting-edge research frontiers. From 2017-2023, Professor Wimmer led the Christian Doppler Laboratory on Model-Integrated Smart Production (CDL-MINT), where he developed engineering approaches for digital twins. He is also the co-author of the influential book "Model-driven Software Engineering in Practice" (2nd edition, 2017). Professor Wimmer is actively involved in the organization of major scientific events including the IEEE International Conference on Quantum Software (QSW) and the International Conference on Engineering Digital Twins (EDTconf), demonstrating his leadership in these emerging research communities. His research has practical applications across various domains including smart cities, industrial automation, tunneling/construction, and quantum computing. The MATISSE project represents a significant multi-partner effort to develop a framework for federated digital twins of industrial systems.
Prof. Ulrich Schmid is a full professor at TU Wien, affiliated with the Forschungsbereich Embedded Computing Systems. His research focuses on distributed systems, fault-tolerant computing, and asynchronous algorithms. He leads projects like 'Asynchronous Distributed Algorithms in the Theta-Model' and 'Gracefully Degrading Agreement in Directed Dynamic Networks.' Prof. Schmid has received honors at TU Wien and actively supervises numerous students in PhD and Master's programs. His academic work spans theoretical foundations (e.g., epistemic logic in Byzantine systems) and practical applications (e.g., digital circuit delay modeling). Key contributions include hybrid delay models for integrated circuits and formal verification frameworks for timed circuits. Collaborations involve institutions like the Institut für Technische Informatik and the E191-02 research group. Notable research areas: Byzantine fault tolerance, consensus protocols, and embedded systems Leadership in 4 major projects addressing distributed computing challenges Recipient of TU Wien honors (2021) Prof. Schmid's lab emphasizes bridging theoretical computer science with hardware-software co-design, producing over 220 publications and 10+ supervised theses since 2000.
M. Anton Ertl is an Associate Professor at TU Wien's Faculty of Informatics, Department of Compilers and Languages. His roles include teaching courses such as 'Compilers,' 'Efficient Programs,' and 'Stack-based languages.' He specializes in compiler back-ends, Forth, interpreters, programming languages, operating systems, and computer architectures. Ertl's research focuses on optimizing interpreters, compiler design, and hardware security, particularly addressing vulnerabilities like Spectre. His research interests span interpreter performance, compiler optimization, and Forth language evolution. Recent work includes exploring hardware-based Spectre mitigation, decompilers for Gforth, and stack-based language efficiency. He actively contributes to the EuroForth conferences as an editor and presenter. Ertl supervises students on topics like compiler construction, reverse engineering, and interpreter optimization. His academic contributions include over 50 publications, with a focus on virtual machine performance, compiler back-ends, and Forth-related advancements. He is a key figure in the Gforth project and regularly teaches advanced courses on programming languages and computer systems.
Wei Li is a Professor at the School of Computer Science and Engineering, Beihang University (since 1986), and Director of the State Key Laboratory of Software Development Environment (since 1992). He has held visiting positions at institutions including the University of Minnesota and Universität Saarlandes. Education: Ph.D. in Computer Science, University of Edinburgh (1979–1983) B.Sc. in Mathematics, Peking University (1961–1966) Research Interests span Mathematical Logic, Concurrent Programming Languages, Satisfiability Problems, Artificial Intelligence, Software Crowdsourcing, and Big Data. His work includes foundational contributions to logical frameworks for belief revision and specification evolution, with applications in software trustworthiness and constraint satisfaction. Publication Trends reveal a focus on formal methods (R-calculus, open logic systems), software crowdsourcing, and phase transitions in constraint satisfaction problems. His research integrates theoretical rigor with practical applications in information science and engineering. Scientific Awards include: Chinese Government Award for Publishing (2017) Tsiolkovsky Medal (2007) National Prize of First Class for Achievements in Education (2005) Ho Leung Ho Lee Prize (1998) Academician, Chinese Academy of Sciences (1997) He also supervised 8 post-docs, 52 Ph.D., and over 100 graduate students.
Tao Xie is a Chair Professor at the School of Computer Science, Peking University, and serves as Vice Director of the Key Lab of High Confidence Software Technologies under the Ministry of Education, China. Previously, he held tenured positions at the University of Illinois at Urbana-Champaign and North Carolina State University, advancing from Assistant to Full Professor. His research focuses on software analytics , software security , system software , trustworthy AI , and intelligent software engineering , aiming to enhance software quality and reliability. He has contributed to foundational work in software testing and mining software repositories. Notable honors include: ACM Fellow (2021) AAAS Fellow (2019) IEEE Fellow (2018) NSF CAREER Award (2009) Xie actively serves in academic leadership roles, including Program Co-Chair for ICSE 2021 and Vice Chair of the China Computer Federation Technical Committee on Software Engineering. He also contributes as Co-Editor-in-Chief for the Wiley Journal of Software Testing, Verification and Reliability.
Professor Jeffrey Kramer is a distinguished academic at Imperial College London, where he currently serves as Professor in Distributed Computing within the Department of Computing, Faculty of Engineering. With a career spanning over four decades at Imperial College, he has held numerous leadership positions including Senior Dean (2009-2012), Dean of the Faculty of Engineering (2006-2009), and Head of the Department of Computing (1999-2004). Professor Kramer's research focuses on software engineering, particularly in distributed computing, requirements engineering, software architecture, and self-managing adaptive systems. His work on the Darwin Software Architecture led to commercial implementation by Philips in consumer television products. He has been a principal investigator in research projects developing the CONIC and DARWIN environments for distributed programming. His publication portfolio includes over 200 refereed journal and conference papers along with two influential books: 'Distributed Systems and Computer Networks' (1986) and 'Concurrency: State Models & Java Programs' (1999, 2nd ed. 2006). His most cited works address software architecture, dynamic reconfiguration, and adaptive systems, demonstrating a consistent research trajectory focused on foundational aspects of distributed software systems. FREng Fellow of the Royal Academy of Engineering (2008) ACM SIGSOFT Outstanding Research Award (2005, joint with Prof. Magee) ACM SIGSOFT Distinguished Service Award (2011) Editor-in-Chief of IEEE Transactions on Software Engineering (2006-2009) Most Influential Paper Award at ICSE 2003 IEE Informatics Premium prize (1998/99) Professor Kramer has served on over 50 international conference committees in the last decade and has delivered numerous keynote addresses globally. His industrial collaborations include work with BP, BT, NATS, Fujitsu, Barclays Capital, QinetiQ, Kodak, Microsoft, and Philips. He has also served as an expert witness for major law firms and has been involved in numerous research collaborations and consulting engagements.
Stefan Rass is a Professor at the Institute of Networks and Security within the Faculty of Engineering & Natural Sciences at Johannes Kepler University Linz (JKU), where he leads the LIT Secure and Correct Systems Lab. As Principal Investigator for FFG-funded projects including reSilienz (digital supply chain resilience, 2023–2025) and ITPUK (AI signature verification, 2022–2024), he bridges theoretical game theory with practical cybersecurity solutions for critical infrastructures and robotics systems. His research spans game-theoretic security models (patrolling games, defense-in-depth strategies), quantum cryptography (QKD network architectures), and cyber deception frameworks like Honeyquest for measuring honeypot effectiveness. Recent work addresses robotics security benchmarking (RobotPerf), cryptographic instruction chaining for control flow protection, and risk assessment methodologies for interdependent infrastructures. His mathematical decision-making approach integrates bounded rationality and stochastic modeling to solve real-world security challenges. Professor Rass actively shapes the field through program committee roles (ARES 2023), peer reviews, and invited talks on security transparency. His current projects focus on cost-benefit-aware monitoring for cyber-physical systems and quantum key distribution standardization, reflecting Austria’s strategic priorities in digital resilience. The LIT Secure and Correct Systems Lab under his direction develops foundational theories while deploying tools for industrial applications, particularly in critical infrastructure protection and secure robotics workflows.
Marlies Temper is a Professor at St. Pölten University of Applied Sciences, serving as Academic Director for the Data Intelligence (MA) and Data Science and Artificial Intelligence (BA) programs. She is Deputy Head of the Department of Computer Science and Security and a member of the UAS Board from 2023 to 2026. Her roles include leading educational initiatives, conducting research, and managing continuing education programs. Academic Director, Data Intelligence (MA) Academic Director, Data Science and Artificial Intelligence (BA) Deputy Head, Department of Computer Science and Security Continuing Education Officer Marlies Temper's research focuses on Artificial Intelligence , Cybersecurity , and Big Data Analytics . She explores the ethical implications of AI, develops gamified models for security training, and investigates continuous biometric authentication methods. Her work bridges the gap between theoretical advancements and practical applications in AI-driven security solutions. Her recent publications highlight trends in AI Security (e.g., risk frameworks), Biometric Authentication (e.g., touch dynamics), and Cybersecurity Education (e.g., gamified simulations). She emphasizes the responsible use of AI and Big Data while addressing technical and ethical challenges.
Mihaela Dimitrova is an Associate Professor in the Department of Global Business and Trade at WU Vienna. She was previously an Assistant Professor of Management at Oakland University (USA) and holds a PhD from the University of Wisconsin-Milwaukee. In 2025, she will serve as a visiting scholar at the University of Minnesota and IESE Business School, Spain. Academic Background PhD, University of Wisconsin-Milwaukee, USA Associate Professor, WU Vienna Assistant Professor, Oakland University Her research at WU Vienna focuses on the intersection of organizational behavior and international management, particularly global work experiences. She investigates expatriate management, cross-cultural dynamics, and proactive behaviors for international employee thriving. Her work has been published in leading journals like the Journal of Organizational Behavior and Journal of International Business Studies. Notable awards include the 2024 International HRM Scholarly Research Award from the Academy of Management, the 2020 Best Paper in OB/HRM/OT Award, and the 2018 Best International Paper Award. She also received the 2021 Outstanding Reviewer Award from the Journal of Organizational Behavior and the 2024 Journal of World Business Best Reviewer Award. Teaching Courses: International Human Resource Management, Global Careers, Human Capital Analytics Programs: CEMS Master, ExInt Master, IB SBWL Leadership Roles: WU Senate, Research Committee She serves as Associate Editor for the Journal of Global Mobility and on the editorial review boards of Personnel Psychology and Journal of Organizational Behavior. Her collaborations span Austria, the USA, and Spain, with a focus on Ukrainian displaced peoples' integration in Austria.
Franz Wotawa is a Professor of Software Engineering at Graz University of Technology. He holds a M.Sc. (1994) and PhD (1996) from Vienna University of Technology. He has served as head of the Institute for Software Technology from 2003–2009 and since 2020. His research focuses on model-based reasoning, software testing, autonomous systems, and diagnosis, with over 390 peer-reviewed publications. He founded Softnet Austria (2006) to bridge research and industry. He leads the Christian Doppler Laboratory for Quality Assurance Methodologies for Autonomous Cyber-Physical Systems since 2017 and has supervised 90+ master and 36+ PhD students. His awards include the 2016 Lifetime Achievement Award from the International Diagnosis Community. He is a member of Academia Europaea, IEEE, and AAAI. **Education**: M.Sc. in Computer Science, Vienna University of Technology, 1994 PhD, Vienna University of Technology, 1996 **Research Interests**: Model-based reasoning, qualitative reasoning, theorem proving, mobile robotics, verification/validation, software testing/debugging, AI, and autonomous systems. **Notable Projects**: A-IQ Ready (2022–2026): Quantum sensing for autonomous systems. ALFA (2024–2027): AI for smart diagnosis in building automation. Bilateral AI (2024–2029): Combining symbolic and sub-symbolic AI. VARCOS (2025–2028): Vehicle-road cooperative systems for autonomous driving. **Awards & Memberships**: Lifetime Achievement Award (2016, International Diagnosis Community) Senior Member, AAAI Member of Academia Europaea, IEEE, ACM, and Austrian Computer Society **Labs/Teams**: Christian Doppler Laboratory for Quality Assurance Methodologies (since 2017). Active in Cluster of Excellence “Bilateral AI” at TU Graz.
Davide Sangiorgi is a Full Professor at the University of Bologna, Italy, with a distinguished career in computer science and theoretical concurrency. He has held significant roles as Director of Research at INRIA (2000), Researcher at INRIA (1995), and Research Fellow at the University of Edinburgh (1993). His work spans programming languages, distributed systems, and formal verification. Laurea (Master) in Computer Science, University of Pisa, 1987 PhD in Computer Science, University of Edinburgh, 1993 His research focuses on the theory of concurrent and distributed systems, with contributions to bisimulation, process calculi, and type systems. His publications highlight advancements in lock-freedom, environmental bisimulation, and behavioral equivalence, primarily in programming languages and concurrency theory. Key trends in his articles include the development of formal methods for concurrency, type systems for mobile processes, and the application of bisimulation in higher-order languages. His work bridges theoretical foundations with practical verification techniques in distributed systems and programming languages. Elected Chairman of IFIP Working Group 2.2 (FORMAL DESCRIPTION OF PROGRAMMING CONCEPTS) in 2005 and re-elected in 2008 Member of the Council of the Italian Chapter of the European Association for Theoretical Computer Science (EATCS), re-elected 3 times Sangiorgi has supervised 10 PhD students across France and Italy, currently advising 3. He has led 3 large EU projects and bilateral initiatives (France-USA, France-Germany, France-Italy). He co-founded the joint INRIA-University of Bologna laboratory, the first of its kind for INRIA in a foreign institution.