Mohamed Sarwat is an Associate Professor at Arizona State University specializing in databases , spatial data management , and recommender systems . His research focuses on GeoSpark —a cluster computing framework for spatial data—and its extensions like GeoSparkViz for visualization and GeoSparkSim for traffic simulation. Key Contributions: LARS* (Location-Aware Recommender System), Horton* (Graph Reachability), Sindbad (GeoSocial Platform), and Riso-Tree (Graph Database Indexing) Research Themes: Integration of spatial/temporal data with machine learning, efficient indexing for big geospatial datasets, and scalable frameworks for mobility data science His work spans collaborations with 23+ co-authors across institutions like University of Minnesota, University of Melbourne, and University of Salzburg. Current projects emphasize GeoTorchAI —a spatiotemporal deep learning system—and mobility data science infrastructure.
Volker Markl is a Professor at Technische Universität Berlin in the Institute of Software Engineering and Theoretical Computer Science, with additional affiliations at the Berlin Institute for the Foundations of Learning and Data (BIFOLD) and the German Research Center for Artificial Intelligence (DFKI). His research spans database systems, stream processing, and distributed data management with significant contributions to both theoretical foundations and practical implementations. Markl's research interests focus on next-generation data management systems, particularly for streaming and IoT environments. His work addresses critical challenges in distributed query processing, system integration, and performance optimization. He has pioneered approaches for stream processing in volatile infrastructures and developed innovative techniques for GPU-accelerated database operations. His NebulaStream project represents a major contribution to distributed stream processing systems. His publication record demonstrates consistent impact across top database venues including VLDB, SIGMOD, and ICDE. Recent work shows increasing focus on machine learning integration with database systems, privacy-preserving query processing, and educational approaches for teaching large-scale data management. Markl has mentored numerous researchers who have become prominent in the database community, with frequent collaborators including Steffen Zeuch, Tilmann Rabl, and Philipp Grulich. His leadership extends to major research initiatives and collaborations across European institutions.
Dr. Julia Hahn is a Scientific Associate at the Karlsruhe Institute of Technology (KIT), working within the Institute for Technology Assessment and Systems Analysis (ITAS) in the Research Group 'Sociotechnical Futures and Policies'. She serves as co-project leader for the 'Participatory Procedures and Processes in Research Organizations' (PaFo) project and leads the HGF project 'Airborne transmission of the SARS coronavirus – from basic research to efficient air purification systems (CORAERO)'. Her work spans across multiple institutions including German Electron Synchrotron (DESY), German Aerospace Center (DLR), and other Helmholtz Association members. Dr. Hahn completed her doctorate in 2019 at KIT's Faculty of Humanities and Social Sciences with her thesis 'Towards a Global Technology Assessment - Insights from Cases in Germany, China, India and Beyond'. She earned her Master's degree in Applied Cultural Studies from Leuphana University Lüneburg in 2010, followed by a research assistant position there before joining ITAS in 2011. Her research focuses on the intersection of technology, society, and governance, with particular emphasis on global technology assessment frameworks. She examines how participatory procedures can enhance technology assessment processes and influence research agendas. Her work explores responsible research and innovation (RRI) from both theoretical and practical perspectives, analyzing how different institutional contexts shape approaches to responsibility in science and technology. Dr. Hahn investigates policy engagement mechanisms that connect scientific knowledge with decision-making processes, particularly during crises and periods of rapid technological change. Her research often addresses the challenges of transnational technology governance in an increasingly interconnected world. Analysis of Dr. Hahn's recent publications reveals strong thematic continuity in technology assessment methodology, with increasing attention to crisis contexts and pandemic response. Her work demonstrates a clear evolution from national to global technology assessment frameworks, with growing emphasis on comparative international studies. The publications show consistent interdisciplinary collaboration across social sciences, engineering, and health disciplines, reflecting her commitment to transdisciplinary approaches. Recent work increasingly integrates digital methods like bibliometric analysis while maintaining strong theoretical grounding in sociotechnical systems theory. Dr. Hahn has been instrumental in several significant projects including 'Piloting RRI in Industry' (PRISMA), 'Responsible Industry', 'Responsible Research and Innovation in Practice' (RRI Practice), and the 'Citizens' Dialogue on Future Technologies'. Her project work demonstrates consistent engagement with both theoretical frameworks and practical implementation of technology assessment methodologies. She has contributed to multiple European collaborative projects including PACITA (Parliaments and Civil Society in Technology Assessment), showing her commitment to strengthening democratic technology governance across borders. As part of her role at ITAS, Dr. Hahn contributes to the institute's mission of conducting integrated technology assessment that provides 'continuous reflection' for research projects, analyzing social, legal, and ethical implications while considering public trust and acceptance. Her work with the globalTA network demonstrates her commitment to international collaboration in technology assessment.
Prof. Dr.-Ing. Philipp Lensing serves as a Professor in the Faculty of Engineering and Computer Science at Osnabrück University of Applied Sciences. His academic work focuses on cutting-edge developments in virtual and augmented reality systems, computer graphics, and game programming. His research interests span Virtual Reality , Augmented Reality , Mixed Reality , Game Programming , Computer Graphics , and Natural User Interfaces . Prof. Lensing has pioneered work in real-time global illumination techniques, avatar calibration systems, and the integration of virtual content with real environments. His research has been applied across diverse domains including landscape planning, physics education, medical rehabilitation, and industrial engineering. Prof. Lensing's recent publications reveal a strong trend toward practical applications of VR/AR technologies in scientific, educational, and industrial contexts. His work increasingly focuses on multimodal interaction, haptic feedback systems, and the integration of VR with complex scientific instrumentation like scanning probe microscopy. He has supervised numerous student projects focused on VR/AR applications, game development, and 3D modeling. His teaching includes courses on Computer Graphics, 3D Game Programming, Virtual and Augmented Realities, and 3D Modeling and Animation. Prof. Lensing leads several research projects including GROWTH (funded by BMBF), VRnano (BMBF), VRFlow Suite, VR-Physio-BOX, and MoDal-MR, all exploring innovative applications of immersive technologies in various practical contexts.
Prof. Dr.-Ing. Jochen Linßen is a Professor at the Institute of Climate and Energy Systems (ICE) , specifically within the Jülich Systems Analysis (ICE-2) group at the Research Center Jülich GmbH. His work focuses on advancing energy systems modeling, renewable energy integration, and hydrogen technology. Key research areas include the techno-economic analysis of energy transition pathways, hydrogen cost-potentials, and the interplay between energy systems and transportation networks. His expertise spans climate policy, infrastructure planning, and the development of frameworks for long-term mobility demand modeling. He has contributed to high-resolution assessments of renewable energy resources and the evaluation of green hydrogen’s role in decarbonizing industries. Recent work emphasizes AI-driven risk mitigation in energy systems and the impact of natural hazards on energy infrastructure resilience. Research Interests: Modeling of energy systems and hydrogen networks Renewables integration and curtailment challenges Transportation electrification and hydrogen fueling infrastructure Climate policy and decarbonization strategies Key Projects: ETHOS. MODE. regional framework for mobility demand analysis Global assessments of wind and solar power potentials Hydrogen supply chain optimization for Germany and Europe His collaborative approach bridges engineering, economics, and environmental science to address systemic challenges in energy transitions. Ongoing efforts include participatory mapping of green hydrogen potentials in sub-Saharan Africa and analysis of automated driving’s impact on road networks.
Prof. Dr. Frank Kirchner is a leading expert in robotics and artificial intelligence, serving as Executive Director of DFKI Bremen and Professor of Robotics at the University of Bremen since 2002. He founded the Robotics Innovation Center (DFKI Bremen) and co-founded the Brazilian Institute of Robotics (2013) and Institute for Maritime Technologies (MarTech, 2010). Education: Doctorate in Informatics (Dr. rer. nat, Bonn, 1999); Diploma in Informatics and Neurobiology (Bonn, 1994) Research Interests focus on biologically inspired robotic motion, highly redundant systems, AI-driven autonomous robotics, and cross-domain applications in space, maritime, and industrial contexts. His work bridges theoretical and applied robotics, emphasizing simulation-reality gaps and adaptive control frameworks. Recent Publications highlight advancements in co-design optimization for manipulators, planetary exploration robotics, and sensor-based industrial assembly learning, reflecting interdisciplinary trends in AI, mechatronics, and environmental adaptation. Scientific Awards: Honorary Doctorate (2017, SENAI CIMATEC, Brazil) BBAW Membership (2015–) Advising includes supervising 65 doctoral theses (38 completed, 27 in progress) and mentoring over 250 bachelor’s/master’s students at the University of Bremen. He leads major projects like AI-REEFSHIELD and FieldCoBots , with funding from EU, DFG, BMBF, and DLR.
Constantin Grigo is a PhD researcher at the Technical University of Munich (TU Munich), actively engaged in the Continuum Mechanics group. His work focuses on Uncertainty Quantification (UQ) and Machine Learning (ML), particularly for applications in maritime safety, bicycle traffic modeling, and stochastic systems. He has presented his research at major conferences like SIAM UQ and WCCM, and has been recognized with Student Travel Awards from SIAM UQ 2018 and SIAM CSE 2019. Education: Master of Science in Physics, LMU Munich (2015) Bachelor of Science in Physics, LMU Munich (2012) Year abroad at Grenoble INP (2010-2011) Research Interests: Probabilistic machine learning for coarse-graining high-dimensional systems Bayesian model and dimension reduction Stochastic differential equations in heterogeneous media Microscopic traffic simulation for bicycles and autonomous vehicles Digital twin applications for maritime and urban mobility Reduced-order modeling of random materials Selected Awards: SIAM UQ 2018: Student Travel Award Winner SIAM CSE 2019: Student Travel Award Winner His publications span topics such as data-driven scenario specification for autonomous vehicles, bicycle maneuver prediction using neural networks, and physics-constrained surrogates for UQ. He also contributes to open-source simulation tools like SUMO for traffic modeling.
Hans-Joachim Linke is a Professor of Land Management at the Technical University of Darmstadt (TU Darmstadt) in the Department of Civil Engineering and Geodesy. Since 2002, he has led research on urban development, land management, and sustainability. He concurrently serves as Academic Director of the MSc program in Sustainable Urban Development at the Vietnamese-German University in Ho Chi Minh City (since 2013). Previously, he was a project leader at LEG Landesentwicklungsgesellschaft NRW GmbH (1997–2002) and a researcher at the University of Bonn (1990–1997). His education includes a degree in Surveying Engineering from the University of Bonn (1982–1988) and preparatory service for higher surveying administration in North Rhine-Westphalia (1988–1990). Research Focus: Linke investigates demographic shifts, climate adaptation in cities, infrastructure for rapidly urbanizing areas (especially Southeast Asia), land management tools, real estate determinants, and GIS applications. His work emphasizes participatory approaches, sustainable resource use, and policy integration across environmental and urban systems. Publication Trends: Recent articles (2020–2025) reveal a strong emphasis on sustainable land and water management, digital tools for urban planning, and climate resilience. Key themes include water reuse systems, AI/remote sensing in land assessment, participatory disaster resilience, and institutional analyses of land policies. Cross-disciplinary approaches integrate environmental engineering, geospatial tech, and socio-economic factors. Leadership & Service: He has held multiple university leadership roles, including Dean (2007–2011) and Vice Dean (2011–present) of Civil Engineering and Geodesy. External commitments include editorial roles for Flächenmanagement und Bodenordnung , committee memberships in geodesy and infrastructure organizations, and advisory positions for rural planning academies.
Prof. Thomas H. Kolbe serves as Chair of Geoinformatics at the Technical University of Munich (TUM), where he leads research in spatial, temporal, and semantic modeling of urban environments. His work focuses on developing foundational frameworks for 3D/4D city models, digital twins, and smart city applications through international standardization efforts including CityGML and IndoorGML. His research spans virtual city modeling, urban system simulation, and GIS integration with emerging technologies. Current projects emphasize AI-driven urban scenario generation, semantic streetspace modeling, and IoT integration in digital twin ecosystems. Recent publications demonstrate strong interdisciplinary connections between computer vision, urban planning, and geospatial data science, with particular emphasis on practical implementations of 3D city models for sustainability challenges. Prof. Kolbe actively contributes to professional organizations including the Round Table GIS eV (as Chairman since 2013) and the Munich Data Science Institute (as core member since 2021). His leadership extends to the Leonhard Obermeyer Center for digital methods in the built environment and the Hans Eisenmann Forum for agricultural sciences. His work bridges theoretical geoinformatics with practical urban applications through numerous collaborative projects with municipal governments and industry partners.
Karl Schmid is a W3 Professor of Crop Plant Biodiversity and Breeding Informatics at the University of Hohenheim's Institute of Plant Breeding, Seed Science and Population Genetics within the College of Agricultural Sciences. His research integrates evolutionary genetics, population genomics, and machine learning to address agricultural challenges. Ph.D. in Biology, University of Munich (1996) Postdoctoral Research, Cornell University (1997-1999) Emmy-Noether Research Group, Max Planck Institute of Chemical Ecology (2000-2006) Group Leader, Leibniz Institute of Plant Genetics (2006-2008) Professor of Genetics, Swedish Agricultural University (2008) His research focuses on crop biodiversity conservation, evolutionary genetics of plant pathogens, and breeding informatics applications. Current work leverages deep learning for phenotyping (quinoa panicles, barley genomics) and analyzes pathogen evolution (Exserohilum turcicum in maize). His team actively develops computational tools like GGoutlieR for geo-genetic pattern detection. Recent publications demonstrate strong trends in applying AI to agricultural genomics, particularly in quinoa improvement and pathogen surveillance. His group leads the EU H2020 INVITE project on molecular markers in plant variety protection and organizes international symposia like the 2024 Quinoa Symposium at Hohenheim. Head of Crop Biodiversity and Breeding Informatics Group Principal Investigator, EU H2020 INVITE project Organizer, International Quinoa Symposium 2024
Dr. Yelda Turkan is an Associate Professor in the School of Civil and Construction Engineering at Oregon State University and a Hans Fischer Fellow at the Technical University of Munich (TUM-IAS). Her research focuses on leveraging computer vision, machine learning, and digital twins to enhance sustainability and resilience in the built environment. She holds a Ph.D. in Civil Engineering from the University of Waterloo, Canada, and dual B.Sc. degrees in Civil Engineering and Geomatics Engineering from Istanbul Technical University, alongside an M.Sc. in Remote Sensing. Her work integrates advanced technologies like LiDAR and BIM to improve construction monitoring, structural safety, and fire protection. She has authored over 80 peer-reviewed publications and secured $4.5M in grants from agencies like the NSF. Dr. Turkan serves as Vice President of the International Association for Automation and Robotics in Construction and chairs the ASCE Computing Division Executive Committee. Her research spans digital twins for infrastructure performance, fire safety simulations, and automated progress tracking. Key contributions include frameworks for bridge construction monitoring, fire safety management in timber structures, and BIM-based energy fault detection. Awards include the Robert C. Wilson Faculty Scholar (2023–2025) and ASCE ExCEEd Teaching Fellow (2015).
Jan-Henrik Haunert is a Professor at the University of Bonn, affiliated with the Institute of Cartography and Geoinformatics within the Faculty of Civil Engineering and Geodetic Science. His research focuses on map generalization, geographic information systems (GIS), and optimization techniques in cartography. He has contributed to projects funded by the German Research Foundation (DFG), particularly in deriving scale-dependent representations of geographic data. His work emphasizes logical consistency, semantic accuracy, and quality assessment in geospatial data processing. Key research areas include land cover map generalization, spatial data integration (e.g., volunteered geographic information), and rule-based incremental generalization. He has developed methodologies leveraging mixed-integer programming and straight skeleton algorithms for cartographic automation. His publications span peer-reviewed journals like GeoInformatica and Photogrammetrie - Fernerkundung - Geoinformation , as well as conference proceedings such as AGILE and ACM-GIS. Haunert’s contributions address challenges in geospatial data quality, including polygon simplification and river dataset matching. He has also explored applications in vehicle localization and virtual reality systems like the GeoScope for urban planning. His work bridges theoretical GIScience with practical applications in cartography and geoinformatics.
David Bermbach is a Full Professor at Technische Universität Berlin , leading the Scalable Software Systems group since 2023. His research focuses on distributed systems, serverless computing, and benchmarking, with significant work on edge and fog computing architectures. He is affiliated with the Einstein Center Digital Future and co-chairs interdisciplinary projects like SimRa for bicycle traffic safety. Full Professor, Scalable Software Systems (2023–present) ECDF-Professor, Mobile Cloud Computing (2017–2023) Postdoctoral Researcher (2014–2017) Education : Diploma in Business Engineering (2010) – Karlsruhe Institute of Technology (KIT) PhD in Computer Science (2014, summa cum laude) – KIT Research Interests span distributed systems with emphasis on cloud, edge, and fog computing, serverless architectures, IoT platforms, and benchmarking frameworks. His work addresses consistency-performance trade-offs, resource placement, and interdisciplinary applications in urban mobility and satellite edge computing. Article Trends show a focus on serverless computing (12/15), edge-cloud integration (9/15), and benchmarking methodologies (7/15). Key themes include optimizing function placement, federated learning architectures, and low-earth orbit computing systems. Scientific Awards Best Paper Award – ShutPub (2024) Best Workshop Paper – A Research Perspective on Fog Computing (2017) Best Paper Runner Up – Benchmarking Eventual Consistency (2014) Summa Cum Laude PhD Thesis (2014) Advising & Grants include mentoring students like Tobias Pfandzelter and Trever Schirmer, leading funded projects through the Einstein Center Digital Future, and contributing to 6G network research. His team works on cloud federation, serverless optimization, and real-world IoT applications.
Thomas Scholten is Professor of Soil Science and Geomorphology at the Department of Geoscience, Faculty of Science, Eberhard Karls University Tübingen. He has been director of the Institute of Geography at Tübingen University since 2006 and has held various leadership roles including President of the German Soil Science Society (2012-2015) and council member of the European Society for Soil Conservation since 2004. In 2016, he was elected as a member of German National Academy of Science and Engineering (acatech). Since 2017, he has been co-speaker of the Collaborative Research Center (SFB 1070) 'ResourceCultures' and since 2019, he has been a principal investigator in the Cluster of Excellence 'Machine Learning - New Perspectives for Science' at Tübingen University. Chair of Soil Science and Geomorphology (full professor) at Eberhard Karls University Tübingen (2005-present) Director of the Institute of Geography at Tübingen University (2006-present) Co-speaker of the Collaborative Research Center (SFB 1070) 'ResourceCultures' (2017-present) Principal Investigator in the Cluster of Excellence 'Machine Learning' (2019-present) Professor Scholten's research focuses on soil science, environment, geomorphology, geoecology, soil erosion, and machine learning applications in soil science. His fieldwork spans Europe, Africa, and Asia with major projects in South Africa, Swaziland, Sudan, Israel, China, Nepal, Switzerland, and Germany. He has published extensively with 9 books, 228 refereed papers, and 378 conference papers to his name. His recent publications reveal a strong integration of traditional soil science with cutting-edge machine learning techniques, particularly in digital soil mapping, soil erosion prediction, and resource management. The research spans multiple continents and addresses critical environmental challenges through interdisciplinary approaches combining soil science, remote sensing, and computational methods. Member of German National Academy of Science and Engineering (acatech) (2016-present) President of the German Soil Science Society (DBG) (2012-2015) Council member of the European Society for Soil Conservation (ESSC) (since 2004) Editorial board member of Journal of Plant Nutrition and Soil Science, Pedosphere Professor Scholten has received research grants from over 15 institutions, primarily the European Union (EU), the German Research Foundation (DFG), and the German Federal Ministry of Education and Research (BMBF). He serves as a referee for numerous international journals and has advised on scientific policy through various advisory boards and committees. His work has significant implications for sustainable land management and climate change adaptation strategies globally. He leads the Soil Science and Geomorphology work group at the University of Tübingen, with research activities spanning field studies, laboratory analyses, and computational modeling. His team collaborates with researchers across disciplines including geography, ecology, computer science, and archaeology to address complex environmental challenges through the ResourceCultures Collaborative Research Center and other international projects.
Prof. Dr.-Ing. habil. Robert Böhm is a faculty member at the Faculty of Engineering , Leipzig University of Applied Sciences (HTWK Leipzig) , where he holds the Professorship for Lightweight Construction with Composite Materials . His research focuses on sustainable composite material applications, structural health monitoring, and additive manufacturing technologies. Key projects: EuReCOMP (circular economy for composites), SoKoROMed (soft robotics in medicine), and PRINTCAP (3D-printed structural supercapacitors). Active in EU clusters like Essence and Carbon Fibres & Advanced High Performance Composites . Leads the Composite Circularity Lab and Advanced Materials and Structures Lab , collaborating with institutions like York University and TU Dresden. His work bridges lightweight construction with applications in renewable energy, medical devices, and CO2-free mobility systems. He presented at the 2025 Intec Trade Fair in Leipzig, showcasing innovations like rotor blade-repurposed seating and noise-dampening 3D-printed components. The 15 most recent publications emphasize wind turbine blade recycling, structural supercapacitors, 3D-printed composites, and environmental impact assessments. Articles span 2022-2025, with keywords covering materials science, mechanical engineering, and renewable energy.