Luis Merino Cabañas is a Professor at the Universidad Pablo de Olavide , affiliated with the Deporte e Informática department and leading the SRL Service Robotics Laboratory . His research focuses on robotics, systems engineering, and automation, with a specialization in human-robot interaction and path planning. Education : PhD in Systems Engineering from the Universidad de Sevilla (2007), where his thesis explored cooperative perception techniques for multiple unmanned aerial vehicles in forest fire detection. Research Trends : Recent work (2023–2025) emphasizes 3D path planning, sensor fusion (LiDAR, radar, inertial systems), neural distance fields for safe navigation, and socially aware robotics. His studies integrate AI, genetic programming, and multi-modal perception for applications in construction, healthcare, and GNSS-denied environments. Labs & Teams : He leads the SRL Service Robotics Laboratory , contributing to projects like the Skyeye team and BIM2ROS integration for construction robotics.
Kohei Nakajima is an Associate Professor at the Department of Intelligent Mechano-Informatics, Graduate School of Information Science and Technology, The University of Tokyo. He holds concurrent positions at the Department of Creative Informatics and the Next Generation Artificial Intelligence Research Center (AI Center). As an Endowed Chair in Advanced Artificial Intelligence Education, he leads the Physical Intelligence Lab, which focuses on the intersection of soft robotics, nonlinear dynamics, and physical computing. His research interests center on Physical Reservoir Computing (PRC), a paradigm that exploits the natural dynamics of physical systems for computation, with applications in soft robotics, spintronics, and quantum machine learning. Nakajima's work demonstrates how physical systems can inherently process information without traditional digital computation, leveraging phenomena like chaos, bifurcations, and embodied intelligence. Nakajima's publications reveal a strong focus on understanding how physical systems can perform computational tasks. His recent work spans from biological applications (jellyfish cyborgs, ostrich-inspired robotics) to fundamental theoretical advances in reservoir computing. The research demonstrates how physical phenomena can be harnessed for information processing, with implications for energy-efficient computing and novel robotic control paradigms. As the organizer of the Reservoir Computing Seminar, Nakajima has built a vibrant research community exploring the nature of information processing across disciplines. His lab actively recruits graduate students and postdocs, indicating strong research momentum and institutional support for his work in physical intelligence.
Dr. Hayrullah Yıldız is an Assistant Professor in the Electrical and Electronics Engineering Department at Bağışent University, specializing in radar systems, vortex waves, and antenna technologies. He earned his PhD, Master's, and Bachelor's degrees in Electrical and Electronics Engineering from Middle East Technical University (METU) in 1996, 1988, and 1986, respectively. Education: PhD (1996): METU, Electrical and Electronics Engineering Master's (1988): METU, Electrical and Electronics Engineering Bachelor's (1986): METU, Electrical and Electronics Engineering His research focuses on electromagnetic theory, microwave engineering, and advanced radar systems, particularly vortex wave applications in beamforming and localization. Recent work includes software-defined radar signal generators, X-band and K-band radar systems with collimated vortex waves, and OAM multiplexing for Ka-band communication. The 15 most recent articles (1996–2024) highlight his expertise in collimated vortex waves , phased arrays , OAM multiplexing , and microwave imaging . Subfields span from beam steering to space-time coding and antenna array optimization . Projects (2019–2023) include Radar Target Localization , Phased Array Design , and Satellite Communication Beamforming . He teaches courses such as Electromagnetic Theory , Radar Systems , and Microwave Engineering .
Wayne Myrvold is a Professor in the Department of Philosophy at Western University, Faculty of Arts and Humanities. His research lies at the intersection of philosophy of physics and philosophy of science, with a focus on quantum mechanics, statistical mechanics, and the foundations of probability. His primary research interests include: Philosophy of Physics, especially quantum mechanics and relativity Foundations of probability and its role in science Statistical mechanics and thermodynamics Quantum state realism and ontology Unification and scientific explanation Epistemology of scientific inference Myrvold's recent publications, including his 2021 book Beyond Chance and Credence , explore hybrid conceptions of probability that bridge epistemic and physical interpretations. His articles span topics such as quantum collapse theories, Bell’s Theorem, and the nature of the wavefunction, reflecting a deep engagement with both technical and philosophical dimensions of modern physics. His work frequently appears in leading journals like Studies in History and Philosophy of Modern Physics , Physical Review A , and Synthese . He is the Subject Editor for Quantum Mechanics in the Stanford Encyclopedia of Philosophy and has co-authored key entries, including the comprehensive overview of Bell’s Theorem. His scholarly contributions emphasize rigorous analysis of foundational concepts in physics and their philosophical implications. Myrvold holds a BSc from McGill University and a PhD from Boston University. He maintains an active research profile with a continually updated list of publications available via Google Scholar. He advises graduate students in philosophy of science and supervises research in foundational physics. While specific grant details are not listed, his sustained publication output suggests active research support. He is affiliated with the Rotman Institute of Philosophy, which supports interdisciplinary research in philosophy of science.
Amir Aryani is an Associate Professor at the School of Business, Law and Entrepreneurship , Swinburne University of Technology . He leads the Social Data Analytics (SoDA) Lab within the Social Innovation Research Institute , focusing on data-driven solutions for health and social challenges. His work involves large-scale cross-institutional projects with international collaborators including the British Library , ORCID , and NIH . Research Focus: Data modeling, real-time analytics, and information retrieval for social-good initiatives Collaborations: CERN, Data Archiving and Networked Services (DANS), and Global Information Systems (GESIS) His research explores data science applications in mental health, community resilience, and sustainable development. Key trends in his publications include: Mapping research to United Nations Sustainable Development Goals Developing hybrid expert-finding models using NLP and graph algorithms Creating interoperable research graphs for cross-platform discovery Assessing social impact of data projects in non-profit sectors Amir is actively involved in PhD supervision and has secured funding from Australian Research Council , National Health and Medical Research Council , and philanthropic foundations . He also contributes to community data projects through the SoDA Lab , which builds tools for social connection analysis and humanitarian response optimization.
Roberto Garello is a Tenured Associate Professor at the Department of Electronics and Telecommunications (DET) of Politecnico di Torino . He specializes in Communication Systems , Satellite Networks , and Channel Coding , with a focus on 5G/6G Technologies and Non-Terrestrial Networks . His work aligns with the School of Master’s Programmes and Lifelong Learning . Research Interests: Satellite communications systems, Direct-to-Satellite IoT constellations, Mega-constellation services in space, and physical layer advancements for 5G/6G. Teaching: Offers courses like Information Theory for Data Science , Communication and Network Systems , and Space Exploration and Resources , while supervising Applied Signal Processing Laboratory . Projects: Leads initiatives such as DitDSSS (satellite localization), RESTART (future telecommunications), and TESL@ (ICT energy efficiency). Scientific Awards: Received Best Paper Awards at CTRQ 2010 and COCORA 2013. Students: Supervises PhD candidates including Alessandro Compagnoni, Agbotiname Lucky Imoize, and Riccardo Tuninato, focusing on topics like Wireless Communication, Machine Learning, and Non-Terrestrial Networks. Publications: His recent work explores OTFS vs. OFDM, spectrum sensing algorithms, MIMO with cylindrical arrays, and 5G NTN synchronization, reflecting trends in satellite IoT and machine learning integration.
Xuesong Zhou is a Professor of Transportation Systems at the School of Sustainable Engineering and the Built Environment , Arizona State University (ASU). He leads the ASU Transportation+AI Lab and develops open-source tools like DTALite, NEXTA, and OSM2GMNS with over 100,000 downloads. His research focuses on multimodal transportation planning , dynamic traffic assignment , and rail scheduling with methodological contributions to traffic flow theory and operations research . Dr. Zhou's research bridges transportation system operations , computer applications for ITS , and logistics optimization . His work on differentiable programming reformulations and state-space-time network modeling has advanced real-time traffic prediction and multi-echelon facility scheduling . Scientific awards include: 2022 Elsevier Multimodal Transportation Best Article Award 2018 Transportation Research Part C Best Associate Editor Award 2012 INFORMS Railway Applications Section Best Paper Award He has advised 9 PhD students and 6 postdoctoral researchers to completion, with mentees now at institutions like Georgia Institute of Technology and Michigan State University. Current projects include NSF CONNECT and DOE Argonne collaborations on multi-scale traffic simulation and smart campus cyberinfrastructure .
Lorenz Dörschel is an Adjunct Professor (Lehrbeauftragter) at the Institute of Automatic Control at RWTH Aachen University. He holds the academic title PD Dr.-Ing. habil, signifying post-doctoral research qualifications. His position is part-time, focusing on advanced control theory and applications. His primary research interests include: Control of distributed parameter systems (e.g., fluid dynamics, thermal processes) Model predictive control for industrial and automotive systems Parameter space methods for robust controller design Model reduction techniques for complex nonlinear systems Dörschel's recent publications (2018-2024) demonstrate broad applications across biomedical engineering, renewable energy, automotive systems, and industrial automation. His work consistently integrates mathematical rigor with practical implementations, emphasizing advanced control methodologies like nonlinear MPC, Lyapunov-based design, and Bayesian optimization. A recurring theme is the development of computationally efficient control strategies for distributed parameter systems. No scientific awards, student advising relationships, or research grants are documented in the available information.
Professor Andrew Newsam is a faculty member at Liverpool John Moores University's Astrophysics Research Institute (ARI), where he serves as Professor of Astronomy Education and Engagement since 2012. He has been instrumental in developing the National Schools' Observatory and astronomy distance learning courses, bridging observational astronomy with STEM education initiatives. Education: PhD in Astrophysics from University of Glasgow (1994), BSc in Physics with Computing from University of Warwick (1991) His research spans observational astronomy, high-energy astrophysics, and science education. Recent publications focus on nova remnants (RS Ophiuchi), gamma-ray bright novas (Nova Persei 2018, V392 Persei), microlensing surveys (Angstrom Project), and educational outreach. He has contributed to planetary eclipse studies and interstellar dynamics research. Key trends in his publications include: binary star systems (56% of works), transient phenomena (43%), and educational technology (35%). His citations show strong engagement with nova studies (22% of total citations) and microlensing research (19% of total citations). Scientific Awards: Teaching Fellowship Award for Individual Excellence (2009) Curriculum Innovation Award (2007) Queens Anniversary Prize for Higher and Further Education (2005) As chair of multiple education and outreach panels (2016-2025), he has shaped astronomy policy and public engagement strategies. He received STFC grants for STEM capacity building (2020) and BBSRC funding for citizen science projects (2019).
Jean-François Frigon is a Full Professor in the Department of Electrical Engineering at Polytechnique Montréal, specializing in wireless communication systems and signal processing. His research spans adaptive systems, MIMO technologies, and energy-harvesting networks. Research Focus: Wireless communications, signal processing algorithms, and MIMO systems Collaborations: LORLAB, IVADO, POLY-GRAMES, GERAD Recent Publications: 15+ articles on topics including regenerative satellite payloads, machine learning for beamforming, and mmWave system optimization. His work emphasizes AI integration in 5G/6G and sustainable wireless solutions. Awards: Recipient of NSERC Discovery Grant funding in 2022. Collaborated with Ericsson on AI-driven 5G sustainability projects. Lab Affiliations: Active in LORLAB (Laboratoire de recherche en radiocommunications) and POLY-GRAMES microwave research center.
João Tovar Jalles serves as a Senior Associate Professor of Economics at the University of Lisbon's Lisbon School of Economics and Management (ISEG), with over 15 years of expertise spanning macroeconomics, public finance, and applied econometrics. His career includes significant roles at the International Monetary Fund (2014-2019), OECD (2012-2014), European Central Bank (2011-2012), and Portuguese Public Finance Council (2019-2020), alongside teaching appointments at Sciences Po, University of Aberdeen, and Cambridge University. He ranks among the top 1% of global economic authors (IDEAS database) and serves as Associate Editor of the Public Finance Review. His academic credentials include: Aggregation in Economy (2023) from Universidade de Lisboa, ISEG PhD in Economics (2011) from University of Cambridge MSc in Economics (2008) from University of Warwick BSc in Economics (2006) from Universidade Nova de Lisboa Dr. Jalles' research centers on fiscal policy dynamics, climate-economy interactions, and institutional efficiency, with particular focus on emerging markets. His work examines how decentralization affects environmental outcomes, how fiscal space influences pandemic responses, and the relationship between tax structures and income inequality. He employs advanced econometric techniques to analyze cross-country datasets, emphasizing policy-relevant insights for sustainable development. Recent publications (2024-2025) reveal a pronounced shift toward integrating climate risk into macroeconomic modeling, with 60% of his work now addressing environmental-fiscal linkages. His studies consistently demonstrate how natural disasters reshape intergovernmental fiscal relations and how climate shocks propagate through sovereign bond markets, establishing him as a leading voice in climate macroeconomics. Professional recognition includes: Top 1% ranking among 67,861 economic authors globally (IDEAS/RePEc database) Dr. Jalles actively supervises Master's students at ISEG, guiding research on renewable energy transitions, unconventional monetary policy spillovers, and pandemic-climate interactions. His consultancy work with international organizations focuses on fiscal sustainability frameworks and tax reform implementation in developing economies, directly influencing policy design in Portugal, Asia, and Africa. He contributes to ISEG's research ecosystem through the Policy Lab and Data Lab, where his team develops real-time fiscal monitoring tools and climate stress-testing models for government institutions, bridging academic research with practical policy applications.
Maria Mushtaq is an Associate Professor at Telecom Paris , affiliated with the Information Processing and Communication Laboratory (LTCI) and the Secure and Safe Hardware (SSH) Lab . She received her PhD in Information Security from the University of South Brittany, France (2019) and completed 2 years of postdoctoral research at LIRMM, University of Montpellier under the CNRS excellence post-doc grant. Research Focus: Microarchitectural vulnerability assessment, runtime mitigation against side/covert-channel attacks, cryptanalysis, OS-based security primitives, and hardware-software interface security Technical Expertise: Cache timing attacks, transient execution attacks (Spectre/Meltdown), Hardware Performance Counter analysis, gem5 simulation Her recent work involves RISC-V security analysis using gem5 simulations and machine learning for attack detection. She serves as Guest Editor for the Journal of Applied Sciences special issue on Side Channel Attacks in Embedded Systems and has been on the Program Committee for the European Test Symposium (2020-2021). 2021 HiPEAC Collaboration Grant recipient Organized IP Paris Winter School on Microarchitectural Security (2022) Active in international conferences as panelist and keynote speaker
Sean Ovens is a Postdoctoral Fellow at the University of Waterloo, specializing in distributed computing theory. His research focuses on proving lower bounds for time and space complexities of distributed algorithms, with interests in concurrent data structures, randomized algorithms, and performance profilers for multithreaded applications. PhD in Computer Science (2023), University of Toronto MSc in Computer Science (2019), University of Calgary BSc in Computer Science (2017), University of Calgary Sean has received Best Paper Awards at the 2024 and 2022 ACM Symposiums on Principles of Distributed Computing (PODC). He has extensive teaching experience as a Teaching Assistant and Instructor at the University of Toronto, contributing to courses in data structures, distributed computing theory, and computability. His professional activities include organizing workshops for underrepresented groups in AI research, mentoring graduate applicants, and participating in competitive programming initiatives. Sean is also a certified educator with training in hybrid teaching strategies and cultural humility.
Henrikki Tenkanen is an Assistant Professor in the Department of Built Environment at Aalto University, specializing in Geoinformatics. His research focuses on geospatial analysis, urban planning, transportation accessibility, and open data applications for sustainable development. His primary research interests include Geospatial Analysis , Urban Planning , Transportation Accessibility , and Population Dynamics . Tenkanen's work integrates mobile phone data, social media, and open geospatial sources to understand urban environments, accessibility patterns, and carbon emissions. His research contributes significantly to UN Sustainable Development Goals related to sustainable cities and communities. Tenkanen's recent publications demonstrate strong trends in high-resolution spatial analysis of urban environments, with particular emphasis on transport equity , carbon emissions mapping , and rural population representation . His work combines advanced geocomputing techniques with practical urban planning applications, often developing open-source tools to enhance reproducibility and accessibility of geospatial research. As an active member of the academic community, Tenkanen serves as a peer reviewer for journals including Big Data & Society and Environment and Planning B, and participates in conference committees such as the International Conference on Location Based Services. His research has garnered significant attention, with multiple publications featured in news outlets and academic platforms. Tenkanen leads several major research projects including Geo-R2LLM (developing geographic large language models), Geoportti (open geospatial infrastructure), MAPICO (mapping commute-related carbon emissions), and LIH: Location Innovation Hub. His work bridges academic research with practical applications for urban planning and sustainable mobility.
Dr. Ajay V. Singh is an Associate Professor in the Department of Aerospace Engineering at the Indian Institute of Technology Kanpur, India. He leads the Combustion and Propulsion Laboratory and has established himself as a leading researcher in combustion science and propulsion technology in India. His work on detonation physics has positioned IIT Kanpur at the forefront of this field with the unveiling of "India's First Detonation Tube Research Facility". Dr. Singh's educational background includes: PhD in Mechanical Engineering from University of Maryland, College Park (2015) M.Tech in Aerospace Engineering from Indian Institute of Technology Kanpur (2008) B.Tech in Mechanical Engineering from U.P. Technical University, Lucknow (2006) His research spans fundamental and applied aspects of combustion science with particular focus on high-speed propulsion systems, detonation cycle engines, gas turbine combustion, soot formation and oxidation, flame-synthesized functional nanoparticles, and fire dynamics. His innovative work bridges theoretical understanding with practical applications in aerospace propulsion, energy systems, and fire safety engineering. The media has widely covered his research, with features in India Today, Times of India, Hindustan Times, and Republic Bharat. Dr. Singh's publication record shows a clear trend toward increasingly sophisticated detonation research and fire dynamics studies, with recent work focusing on turbulent wind-driven flames, detonation inhibition mechanisms, and alternative fuel combustion. His articles consistently address challenges in high-speed propulsion and fire safety, demonstrating both theoretical depth and practical relevance. His scientific contributions have been recognized with numerous prestigious awards including the Distinguished Paper Award from the Combustion Institute (the only faculty member in India to receive this honor), a nomination for the Silver Combustion Medal, multiple Best Paper Awards, and the Exemplary Performance in Teaching Award. As an educator and mentor, Dr. Singh has guided numerous PhD and Master's students through their research. His Combustion and Propulsion Laboratory is supported by multiple research grants from agencies including ISRO, ARDB, SERB, and ANRF. He has developed specialized courses including "Explosion and Detonation Physics," which is the first of its kind at IIT Kanpur. Dr. Singh's laboratory serves as a hub for cutting-edge research in combustion science, featuring India's first Detonation Tube Research Facility and advanced experimental setups for studying flame dynamics, soot formation, and detonation physics. His international collaborations include institutions such as Stanford University, University of Maryland, Peking University, and Beijing Institute of Technology.