Andy Stevens is a Senior Lecturer in Sport Management at the University of Winchester. His career includes roles as a consultant to the Football Association (FA), focusing on five-a-side football and futsal development, including strategies for the FA Futsal League and facility strategies. He has authored numerous reports for the SportBusiness Group and contributed to Sport Business magazine, specializing in venue and event management. His research explores sport industry strategy, management, and performance, with notable work on sport governance and facility development. His publications span academic journals, industry reports, and conference presentations, addressing topics like sport venue optimization, sustainability, and global sport events as soft power tools. He has advised organizations such as the Anschutz Entertainment Group and Disability Sport England (now Activity Alliance), contributing to event calendars including the London Wheelchair Marathon. His work bridges academic research and practical industry challenges, emphasizing adaptability and innovation in sport management.
Emanuel Sallinger is a Full Professor at TU Wien's Databases and Artificial Intelligence Group and Vice Dean of Academic Affairs for Business Informatics and Data Science. He leads the Knowledge Graph Lab, focusing on scalable knowledge-based systems, reasoning in knowledge graphs, and AI integration. His research spans computational logic, database theory, and blockchain applications. Education: PhD in Computer Science (awarded 'sub auspiciis praesidentis rei publicae'), Master's degrees in Computational Intelligence and Informatics Management, and a Bachelor's in Software and Information Engineering. Research Interests: Knowledge graphs (construction, reasoning, scalability), logic-based systems, AI/ML integration with databases, enterprise architecture modeling, and financial knowledge systems. His work emphasizes practical applications like enterprise modeling, sustainable waste management, and regulatory compliance. Grants & Projects: Lead Vienna Science and Technology Fund (WWTF)-funded Knowledge Graph Lab. Involved in projects like 'Knowledge Graph-driven Tour Management' (sustainability), 'SustainGraph' (waste processing), and 'Enterprise Architecture Knowledge Graphs'. Teaching: Offers courses on Knowledge Graphs, Generative AI, Database Systems, and research methodology. Supervises doctoral and master's students in AI, databases, and knowledge representation. Labs/Teams: Knowledge Graph Lab at TU Wien, collaborating with industry on blockchain-based systems, financial AI, and enterprise architecture frameworks.
Dr. Farshid Rahmani is a Lecturer at the School of Property, Construction and Project Management (PCPM), RMIT University, Australia. His research and teaching focus on Construction Procurement , Relational Contracting , and Agile Project Management . He supervises Masters and PhD students in areas including Early Contractor Involvement (ECI) Alliances Public-Private Partnerships (PPP) Collaborative Delivery Systems . His recent publications explore agile frameworks for building adaptation, sustainable materials like recycled concrete, and team dynamics in large infrastructure projects. Key themes include modular construction , project lifecycle management , and innovative material usage . He actively applies Grounded Theory and Abductive Reasoning in construction management research.
Professor Hing-Ho Tsang is the Chair in Civil and Structural Engineering at the University of Dundee, with over a decade of academic experience in Australia and Hong Kong. His research focuses on advancing sustainable infrastructure solutions, earthquake resilience, and green technologies to enhance building and infrastructure safety against natural disasters. He holds a Chartered Professional Engineer (CPEng) certification and advises governments and industries on building codes and seismic design guidelines. Tsang chairs the Global Network for Geotechnical Seismic Isolation (GSI) and serves as the Australian National Delegate to the International Association for Earthquake Engineering (IAEE). His expertise spans geotechnical seismic isolation, recycled materials in construction, and structural dynamics, contributing to UN Sustainable Development Goals (SDGs) like resilient infrastructure, circular economy, and climate action. With over 200 publications and a career-long impact ranking in Civil Engineering, Tsang has received prestigious awards including the R W Chapman Medal and Research Impact Award. Research Focus: Seismic design, sustainable construction, bio-inspired materials, and geotechnical isolation systems. Awards: Top Cited Article (2021–2022), Teaching Excellence Award (2022), and multiple international recognitions. Leadership Roles: Editorial board member for Geosynthetics International , organizer of the 18th World Conference on Earthquake Engineering technical session. His work emphasizes equity-driven engineering solutions, fostering inclusive and disaster-resilient communities. Current projects include innovative modular building systems and AI-driven seismic response models.
Markus König is a Professor of Informatics in Civil Engineering at Ruhr University Bochum, where he has been researching and teaching since October 2009. His work focuses on Building Information Modeling (BIM), digital construction technologies, and civil engineering informatics, with significant contributions to the development and implementation of digital methods in German construction industry. Dr. König earned his degree in civil engineering with a focus on applied computer science at Leibniz University Hannover, where he also completed his doctorate on cooperative building planning at the Institute for Building Informatics. He subsequently held a junior professorship for Theoretical Methods of Project Management at Bauhaus University Weimar before joining Ruhr University Bochum. His research spans multiple cutting-edge areas including Building Information Modeling (BIM), construction process simulation, tunneling informatics, infrastructure asset management, and the application of artificial intelligence and computer vision in civil engineering. As chair of the Building Informatics Working Group from 2012-2016, he played a key role in developing the first national BIM curriculum for German universities and serves as editor of the book 'Building Information Modeling: Technological Foundations and Industrial Practice.' Analysis of his recent publications reveals a strong trend toward semantic technologies, digital twins, automated compliance checking, and the integration of AI in construction processes. His work increasingly focuses on information containers, ontology development, and the application of large language models to infrastructure data, reflecting the evolving landscape of digital construction. Dr. König's significant contributions to digital construction have been recognized with prestigious awards: Lower Saxony-Bremen Construction Industry Award (2017) for 'services in the development and introduction of digital construction in Germany' Konrad Zuse Medal (2020) While specific details about his advising and grant activities aren't explicitly mentioned in the provided text, his extensive publication record with numerous co-authors suggests active supervision of doctoral students and research staff. His involvement in multiple collaborative research projects is evident from his publication history. At Ruhr University Bochum, Professor König leads a research group focused on civil engineering informatics, with particular emphasis on BIM, digital construction technologies, and their application across the building lifecycle. His team appears to work at the intersection of computer science and civil engineering, developing innovative solutions for construction process optimization, infrastructure management, and digital transformation of the AEC industry.
Prof. dr. Norbert Corver is a Professor of Dutch Linguistics at Utrecht University , affiliated with the Department of Languages, Literature and Communication and the Institute for Language Sciences . He chairs the Dutch Linguistics division and leads the Mind your Manner Adverbials! (MiMA) project funded by an NWO Open Competition grant (2021-2025). He was a Visiting Professor at the University of Connecticut (2019) and serves as editor of Studies in Generative Grammar . Education: PhD in Linguistics (1990, Tilburg University) Research Interests: Syntax, generative grammar, language variation, syntactic interfaces, and affective language structures Key Projects: MiMA (syntax of adverbials), AThEME (multilingualism in Europe), Syntax of Idioms (NWO-FWO collaboration), DiDDD (Dutch noun phrase diversity) Scientific Recognition: Member of Academia Europaea Current Work focuses on the syntax of adverbials through comparative Germanic studies, while his broader research explores curse expressions, numerical expressions, and dialectal variation. He maintains active collaborations across Europe and contributes to digital resources like the Taalportaal (Dutch/Frisian grammar portal).
Dr. Joshua M. Pearce is a Professor at Western University, holding appointments in the Department of Electrical & Computer Engineering and the Ivey Business School. He is the John M. Thompson Chair in Information Technology and Innovation at the Thompson Centre for Engineering Leadership & Innovation and a Fellow of the Canadian Academy of Engineering. His research focuses on open-source appropriate technology for sustainability and poverty reduction, spanning solar photovoltaics, 3D printing, distributed recycling, and policy analysis. Ph.D. in Materials Engineering from Pennsylvania State University Former Richard Witte Professor at Michigan Tech Editor-in-Chief of HardwareX Author of multiple open-source sustainability books His work integrates engineering, economics, and policy to solve global sustainability challenges. Recent projects include agrivoltaic systems, open-source medical devices, and climate-resilient food production frameworks. He leads the Free Appropriate Sustainability Technology (FAST) research group, which has produced over 200 open-access publications cited in top-tier journals like Renewable and Sustainable Energy Reviews (IF=16.3) and HardwareX (IF=2). Dr. Pearce's scientific contributions include: Fulbright-Aalto University Distinguished Chair Top 0.06% most cited scientist (Elsevier metrics) Leading open-source hardware certification frameworks Developing low-cost scientific instruments His research team includes cross-disciplinary collaborators from Mechanical Engineering, Environmental Science, and Policy Studies. The FAST group emphasizes practical open-source solutions for energy, water, and food security in both developed and low-resource contexts.
Scott Walbridge is the Chair of the Department of Civil and Environmental Engineering at the University of Waterloo, where he has been actively teaching and researching since 2006. He holds a Doctorate in Civil Engineering from the Swiss Federal Institute of Technology (EPFL), a Master's from the University of Alberta, and a Bachelor's in Civil Engineering from the same institution. His research focuses on enhancing structural safety and durability through fatigue assessment, retrofitting of welded metal structures, modular construction, and life-cycle cost analysis. He chairs the CSA aluminum structures technical subcommittee for bridge design codes (S6) and actively contributes to code development for structural welding and aluminum design. Walbridge has been Program Director for Waterloo’s Architectural Engineering program (2018–2022) and serves on editorial boards for journals like Structural Engineering International and ASCE Journal of Bridge Engineering . Education: PhD, Civil Engineering (Steel Structures), EPFL, Switzerland (2005) MSc, Structural Engineering, University of Alberta (1998) BSc, Civil Engineering, University of Alberta (1996) Research Interests: Fatigue assessment, welded metal structures, modular construction, structural reliability, fracture mechanics, and life-cycle cost analysis. His work bridges theoretical frameworks with practical applications, such as improving fatigue life prediction for aluminum bridge decks and optimizing material selection for corrosion resistance. Professional Engagement: Chair of CSA S6 Aluminum Structures Subcommittee, active member of welding code committees (W59, W59.2), and contributor to national bridge design standards. His leadership in code development ensures alignment with modern material technologies and sustainability goals. Teaching & Advising: Recently taught courses like CIVE 512 (Rehabilitation of Structures) and CIVE 704 (Bridge Design). He is currently accepting graduate students in structural engineering and bridge design.
Mikael Johansson is a Professor at Kungliga Tekniska Högskolan (KTH), specializing in Control Technology . He teaches and coordinates courses such as Distributed Optimization (FEL3311) and various advanced-level degree projects in computer science, electrical engineering, and systems engineering. His research spans Control Systems , Machine Learning , and Optimization , with a focus on asynchronous algorithms, federated learning, and applications in energy systems and construction. His work includes 15 recent publications on topics like neural networks, distributed optimization, and battery technology. Notable areas of contribution are in asynchronous learning, federated learning with privacy constraints, and quasi-Newton methods for optimization. His research bridges theoretical advancements with practical applications in urban design, healthcare, and autonomous systems.
Olli Seppänen serves as Associate Professor in Civil Engineering at Aalto University's School of Engineering, specializing in operations management for construction productivity improvement. He coordinates the Vision 2030 consortium—comprising 13 Finnish construction and design firms—to develop industrialized building methods for 2030, while leading multiple Business Finland-funded research initiatives focused on digital construction workflows and real-time monitoring. His research centers on lean construction principles, location-based management systems, and digital transformation through IoT, AI, and robotic vision. Key focus areas include prefabrication optimization, construction logistics, and shifting work off-site to industrialize processes. He aims to solve industry-wide productivity challenges by creating real-time situational awareness and implementing takt production systems for workflow stability. Recent publications (2024-2025) reveal strong emphasis on digital twin frameworks, semantic modeling for quality assurance, and AI applications in risk management. His work bridges theoretical lean construction concepts with practical implementations, particularly in real-time resource tracking, waste reduction in MEP work, and cross-sector learning from high-performing teams. Seppänen has received significant recognition including: School of Engineering doctoral dissertation award (2024) Best paper at IEEE Wireless Sensors Conference (2019) Nordic Conference best paper award for PhD research (2019) DSc dissertation award (2010) As principal investigator, he manages: Vision 2030 consortium projects (2-3 annually; PI for two current projects) iCONS: Real-time resource flow monitoring via indoor positioning RECAP: Deep learning analysis of progress/quality from images/point clouds DiCtion: Integrated data systems for real-time stakeholder situation pictures He actively contributes to the "Performance in Building Design and Construction" research group and leverages the Vision 2030 consortium as a collaborative platform for industry transformation, driving adoption of digitalized, industrialized construction methods through academic-industry partnerships.
Tomer Moshe Schlank is a Professor of Mathematics at the University of Chicago, conducting cutting-edge research at the intersection of Algebraic Topology and Arithmetic Geometry with significant contributions to Chromatic Homotopy Theory and Algebraic K-Theory. His research program centers on deep structural connections between homotopy theory and number theory, particularly exploring redshift phenomena, ambidexterity in K(n)-local homotopy theory, and ∞-categorical frameworks. Schlank's work bridges abstract homotopy-theoretic constructions with concrete arithmetic applications, advancing our understanding of stable homotopy categories and their algebraic representations. Analysis of his recent publications reveals a dominant trend toward chromatic redshift phenomena in algebraic K-theory, cyclotomic extensions, and ambidextrous structures in homotopy theory. His work consistently demonstrates how higher categorical methods solve foundational problems in stable homotopy theory while generating new insights for arithmetic geometry. Tomer Schlank mentors numerous graduate students including PhD candidates Arye Deutsch, Shai Keidar, Jonatan Kogan, Asaf Yekutieli, Shauly Ragimov, Jacob Lerma, and Yuqin Kew ang, along with MSc student Iyar Mazor. His extensive network of former students and collaborators encompasses Edo Arad, Netanel Stein, Yizhak Zanghi, Asaf Horev, Lior Yanovski, Shachar Carmeli, Shay Ben-Moshe, Segev Cohen, Noam Zimhoni, Ariel Davis, and Shaul Barkan. Scientific Awards: None listed in the provided information.
Samuel Leder is a doctoral researcher at the Institute of Computational Design and Construction (ICD) under the Cluster of Excellence IntCDC at the University of Stuttgart. His work focuses on the integration of robotics and architectural design, particularly in developing distributed robotic systems for timber construction. He has been actively involved in research projects such as RP 19-1 – Robotic Kinematic System for Parallel Construction and RP 19-2 – Co-Design for Distributed Cooperative Multi-Robot Systems . Additionally, he serves on the Equal Opportunity Commission at ICD. Bachelor of Design in Architecture (summa cum laude), Washington University in St. Louis Bachelor of Applied Science in Systems Science and Engineering (magna cum laude), Washington University in St. Louis MSc in Architecture via the Integrative Technologies and Architectural Design Research (ITECH) program, University of Stuttgart Samuel’s research explores the synergies between agent-based modeling , robotic systems , and architectural design . His work aims to create minimal robotic machines capable of constructing complex spatial assemblies, particularly with timber structures . He investigates the co-design of robots and the structures they build, emphasizing modular systems and kinematic behaviors . Recent publications highlight advancements in digital twins , adaptive assembly , and human-robot collaboration for timber construction. The 15 most recent articles reveal trends in collective robotic construction , agent-based modeling , and material-robot interaction . These works emphasize timber fabrication , modular systems , and interactive simulation for large-scale construction tasks. Key sub-fields include adaptive assembly , cyber-physical systems , kinematic control , and human-guided robotics . Scientific Awards: German Academic Exchange Service (DAAD) Award for Outstanding Achievement Deutschlandstipendium Samuel’s research is conducted within the ICD at University of Stuttgart , where he collaborates on the Wood Building Systems for Distributed Robotics associated project. His work bridges architecture , robotics , and computational design , aiming to redefine on-site construction methodologies through innovative robotic systems.
Summary Associate Professor Mehrdad Arashpour is an internationally recognized researcher and educator in construction and civil infrastructure, focusing on automation and information technologies. He leads the ASCII Lab at Monash University's Department of Civil and Environmental Engineering. His academic roles include Head of Construction Engineering and membership in the CIB's Working Commission on Off-site Construction (W121) and Infrastructure Task Group (TG91). Education: Ph.D., RMIT University, Australia M.Sc., Grenoble University, France B.Sc., IU University, Iran Research Interests: Digital twins, computer vision, robotics, BIM integration, sustainable construction, and automation in construction processes. His work contributes to UN Sustainable Development Goals, particularly in sustainable cities and communities. Grants & Awards: Over $6M in grants from ARC, Austroads, and industry partnerships. Recognitions include Editor's Choice Paper (ASCE, 2019) and Outstanding Reviewer (Elsevier, 2016). Teaching: Courses like Risk Management in Engineering Projects and Infrastructure Research Project. Advises on PhD topics in computer vision, robotics, and BIM. Labs & Collaborations: ASCII Lab focuses on smart, sustainable solutions for construction. Collaborates with global researchers and organizations like SPARC Hub and Building 4.0 CRC.
Noriko Yui is a Professor of Mathematics at Queen's University in Kingston, Ontario. She holds academic affiliations within the Department of Mathematics and Statistics under the Faculty of Arts and Science. Her research bridges number theory, algebraic geometry, and mathematical physics, with a focus on arithmetic geometry and mirror symmetry, particularly in the modularity of Calabi-Yau threefolds. Yui earned her B.S. from Tsuda College (1966) and her Ph.D. in Mathematics from Rutgers University (1974), supervised by Richard Bumby. She has held visiting roles at the Max-Planck-Institute in Bonn and Newnham College, University of Cambridge. Her work includes collaborations with Fernando Q. Gouvêa, notably proving the modularity of rigid Calabi-Yau threefolds over Q. Her research areas span arithmetic geometry, number theory, algebraic/differential geometry, and particle physics theory. Key contributions include studies on L-functions, mirror symmetry, and the applications of Calabi-Yau manifolds in physics. Since 2007, she has served as managing editor of the journal Communications in Number Theory and Physics . Yui co-authored influential works such as Generic Polynomials: Constructive Aspects of the Inverse Galois Problem and edited volumes like Mirror Symmetry V . Her research emphasizes interdisciplinary connections between mathematics and theoretical physics, particularly in string theory contexts.
Professor Tim Rogers is affiliated with the University of Bath as a faculty member in the Department of Mathematical Sciences . He is actively involved in research spanning complex systems, network theory, and stochastic processes. PhD in Random Matrix Theory from King's College London (2010) His research focuses on emergent behavior in random systems , including: Collective Behavior : Crowd dynamics, lane formation, and noise-enhanced synchronization Epidemics & Networks : Spread prediction, node risk assessment, and misinformation impacts Ecology & Evolution : Trait emergence, species boundaries, and demographic noise effects Random Matrix Theory : Spectral analysis and applications to complex systems Publication trends reflect interdisciplinary work bridging Physics, Biology, and Mathematics , with a focus on network structures , stochastic modeling , and emergence phenomena . Scientific awards include: 2015 : Editor's Choice for Europhys. Lett. 109, 28005 2016 : Highlight of Journal of Physics A 2017 : Editor's Suggestion for Phys. Rev. E 92, 032708 He has supervised numerous PhD students and postdocs on projects related to stochastic dynamics , network modeling , and mathematical biology , with ongoing grants from agencies like EPSRC and The Leverhulme Trust .