Professor Stepan Lucyszyn FREng, FIEEE is Professor of Millimetre-wave Systems at Imperial College London. A pioneer in terahertz technologies, he co-founded Imperial's Centre for Terahertz Science and Engineering and has developed innovative 'THz Torch' wireless communication systems. Research focus areas: Millimeter-wave and terahertz systems engineering Additive manufacturing of RF components RF MEMS technology and applications Low-cost security and defense technologies Honors include Fellow of the Royal Academy of Engineering (2023), IEEE Fellow (2014), and recipient of Junkosha's Technology Innovator Award (2022) for 3D printing innovations. He has authored over 200 papers and 12 book chapters in applied physics and engineering.
Hjalti H. Sigmarsson is an Assistant Professor at the University of Oklahoma's School of Electrical and Computer Engineering within the Gallogly College of Engineering. His research focuses on reconfigurable RF/microwave hardware, spectral management for cognitive radios, heterogeneous integration packaging, and nanomaterial-based device development. Education : B.S.E.C.E., University of Iceland (2003) M.S.E.C.E., Purdue University (2005) Ph.D., Electrical and Computer Engineering, Purdue University (2010) Research Interests : His work advances agile communication systems through tunable microwave components and explores novel packaging techniques for heterogeneous material integration. His nanomaterial research targets next-generation RF devices, while his radar systems development contributes to meteorological observations and mobile phased arrays. Scientific Contributions : He has pioneered liquid metal-tuned filters, substrate integrated waveguide technologies, and evanescent-mode cavity resonators. His publications demonstrate expertise in hybrid acoustic-electromagnetic filters, SAR imaging, and filter shape optimization. Awards : DARPA ASP program recognition (2008) Best paper awards at IMAPS (2008, 2009) Outstanding student paper, IMAPS (2009) Best paper, Microwave/Radio Applications session at IMAPS (2008, 2009) Labs & Centers : He leads research at the University of Oklahoma's Radar Innovations Lab and contributes to the Advanced Radar Research Center. His work includes the Horus All-Digital Phased Array Weather Radar project.
Ramses Martinez is an Assistant Professor in the Department of Industrial Engineering and Biomedical Engineering at Purdue University . He holds a B.A. in Applied Physics from Universidad Autonoma de Madrid (2004) and a Ph.D. in Physics and Materials Science from the Spanish National Research Council (CSIC) in 2009. Prior to joining Purdue, he conducted postdoctoral research in the lab of Prof. George M. Whitesides at Harvard University, focusing on nanofabrication, microfluidics, and soft robotics. Education B.A. in Applied Physics, Universidad Autonoma de Madrid (2004) Ph.D. in Physics and Materials Science, Spanish National Research Council (CSIC) (2009) His research bridges soft robotics , flexible electronics , and nanofabrication , with a focus on creating self-powered e-textiles , omniphobic paper-based devices , and programmable mechanical metamaterials . His work has led to over 25 publications and 9 patents, emphasizing practical applications in health monitoring and industrial automation . Notable projects include waterproof electronic decals for biofluid monitoring, smart bandages for chronic wound detection, and laser nanoforming methods for scalable metallic structures. His research has been recognized through the Fulbright Fellowship and the Marie Curie IOF Grant .
Zoran J. Stankovic is a Full Professor at the Faculty of Electronics, University of Niš, Serbia, in the Department of Telecommunications. He has been an integral part of the institution since earning his PhD in 2007, progressing from Assistant to Associate Professor (2020) and Full Professor (2024). He is actively involved in research, education, and academic leadership. Education: PhD in Telecommunications, Faculty of Electronics, University of Niš (2007) Master's in Telecommunications, Faculty of Electronics, University of Niš (2002) Bachelor's in Electronics and Telecommunications, Faculty of Electronics, University of Niš (1994) His research focuses on applying artificial neural networks to solve complex problems in electromagnetics and wireless systems. Key areas include antenna design optimization , direction-of-arrival (DoA) estimation , microwave cavity modeling , and smart textile antennas . His work bridges machine learning with electromagnetic theory, enabling efficient and adaptive RF system design. The analysis of his recent publications reveals a strong trend in using deep and hybrid neural networks for electromagnetic modeling and signal processing. His research emphasizes real-world applications such as wearable antennas, mobile source tracking, and intelligent antenna systems, often published in high-impact IEEE and Wiley journals. Scientific Awards: Commemorative Plaque from the Yugoslav Society for Microwave Techniques and Technologies (2005) for outstanding scientific results in microwave engineering Advising and Grants: While specific students are not listed, he has supervised numerous academic works. He has participated in 17 research projects (13 national, 4 international including DAAD, NATO, COST) and 8 educational development projects (including ERASMUS+, TEMPUS, WUS). These reflect sustained funding and academic collaboration. Labs and Teams: He is the founder and head of the Laboratory for Antennas and Propagation at the Faculty of Electronics, Niš. He is actively involved in organizing and leading the international conferences TELSIKS and ICEST , serving on their program and organizational committees, demonstrating strong leadership in the academic community.
Dr. Arash Adel is an Assistant Professor in the School of Architecture at Princeton University, where he serves as Director of the ARG laboratory and holds an Associated Faculty appointment in Computer Science. His interdisciplinary work bridges architectural design, computational systems, and robotics to pioneer sustainable, low-carbon construction methodologies through human-robot collaborative frameworks. His academic foundation includes a Doctorate in Architecture (Dr. sc.) from ETH Zurich and a Master of Architecture (M. Arch.) from Harvard University, establishing technical rigor in digital fabrication and structural innovation. Adel's research program investigates human-robot collaborative processes to transform construction practices, focusing on automated assembly, additive manufacturing with timber and clay, and computational design systems. His work targets resilient building cultures through precision robotics, extended reality interfaces, and STEM education initiatives that democratize access to advanced fabrication technologies. This research directly addresses industry inefficiencies and climate change imperatives by enabling novel architectural forms previously deemed economically or technically unfeasible. His publication trajectory (2018-2025) demonstrates consistent advancement in robotic construction, with evolving emphasis from timber frame systems to multi-robot coordination and adaptive clay formwork techniques. Key thematic threads include human-robot teaming for complex assembly, perception-driven uncertainty reduction, and sustainable material utilization through digital workflows. Major recognitions include: Architectural Research Centers Consortium (ARCC) New Researcher Award (2023) Canadian Wood Council’s Wood Design & Building Awards Architecture Press Release’s Global Future Design Awards Adel leads significant research initiatives including a $1.58M NSF grant (2021) for human-robot teams in construction, mentoring graduate students like Ruxin Xie and Daniel Ruan who contributed to award-winning projects. His ARG laboratory operates as an interdisciplinary nexus, integrating architects, computer scientists, and structural engineers to develop practical robotic solutions for industry adoption. The ARG laboratory currently drives research in multi-robot timber construction, perception modeling for adaptive fabrication, and clay-based formwork systems, with recent projects like the Robotically Fabricated Structure (RFS) pavilion demonstrating scalable applications of human-robot collaboration in sustainable building practices.
Roozbeh Tabrizian is an Associate Professor in the Department of Electrical & Computer Engineering at the University of Florida, holding the Nelms Rising Star Endowed Professorship. His research focuses on RF micro- and nano-electro-mechanical systems (RF N/MEMS), nonlinear and nonreciprocal systems, and ferroelectric materials for sensing and information processing. He has received prestigious awards including the NSF CAREER Award (2018) and DARPA Young Faculty Award (2019). Education: PhD in Electrical Engineering from Georgia Tech (2013), BS from Sharif University of Technology (2007). Research interests include developing temperature-stable acoustic resonators, ferroelectric transducers, and novel materials for high-frequency applications. His work bridges nanotechnology, materials science, and MEMS to create innovative devices for communication and sensing. Key scientific awards include the HWCOE Innovation Award (2025), DARPA Director’s Fellowship (2021), and multiple best paper awards at international conferences. His grants include the NSF CAREER Award supporting nano-acoustic waveguide research. He advises on advanced MEMS fabrication techniques and collaborates on CMOS-compatible resonators. His lab develops nanoelectromechanical tags for anti-counterfeiting and high-precision frequency control systems.
Johan Sidén is a Lecturer and Associate Professor at Mid Sweden University , employed in the Department of Computer and Electrical Engineering (DET) . His work focuses on RFID technology , antenna design , and printed/flexible electronics , with a particular emphasis on industrial IoT and welfare technology applications. Research Keywords : Radio Frequency Identification, Antenna Design, Flexible Electronics, Wireless Sensor Networks, Microwave Engineering, Electronic Design Key Projects : DRIVEN (data-driven industrial transformation), SmartArea (functional surfaces), Pressure (ulcer monitoring), MakeSense! (welfare technology) Publications : 15+ recent works on wearable antennas, smart packaging, UWB antenna design, and RFID sensor integration Collaborations include partnerships with industrial and academic institutions, focusing on sustainable electronics, sensor systems, and smart infrastructure. His technical expertise spans antenna optimization , printed circuits , and edge computing for harsh environments.
Dr. Dimitrios Anagnostou is an Associate Professor at Heriot Watt University's School of Engineering & Physical Sciences, affiliated with the Institute of Sensors, Signals & Systems (ISSS). He holds a Marie Skłodowska-Curie Fellowship and leads research in reconfigurable antennas, metamaterials, and biomedical sensing. He earned his PhD from the University of New Mexico (2005), followed by postdoctoral work at Georgia Tech and faculty roles at SDSMT before joining Heriot Watt in 2016. His research focuses on electromagnetic devices for aerospace, defense, and healthcare applications, including reconfigurable antennas, metamaterials, and AI-driven radar systems. He has published 169 papers and received 15+ awards, including the IEEE John D. Kraus Antenna Award and DARPA Young Faculty Award. Dr. Anagnostou serves as an Associate Editor for IEEE Transactions on Antennas and Propagation and actively contributes to conference committees. His lab specializes in antenna arrays, radar sensing, and functional materials like vanadium dioxide (VO₂). He supervises PhD students and supports interdisciplinary projects in sustainable RF electronics and medical imaging.
Stavros Vougioukas is a Professor and Vice Chair in the Department of Biological and Agricultural Engineering at the University of California, Davis, within the College of Engineering. He is actively involved in research and graduate mentorship, focusing on agricultural robotics and automation for specialty crops. His work integrates engineering solutions to improve efficiency and sustainability in farming systems. His research interests include agricultural robotics , automation of harvesting processes , sensors and control systems , precision agriculture , and wireless sensor networks for orchard environments . He develops technologies for robotic and robot-aided harvesting, particularly in strawberries and orchard crops, emphasizing optimal management of inputs and yield monitoring. The recent publications reflect a strong trend in robotics integration , real-time sensing , and data-driven decision-making in agriculture. His work spans mechanical design, signal processing, path planning, and structural durability, indicating a multidisciplinary approach to solving agricultural challenges through engineering innovation. Scientific Awards and Recognition: $1.6M grant (2021) to develop innovative fruit-picking machines CITRIS Seed Award (2023) for engineering solutions in agriculture Professor Vougioukas mentors graduate students and leads funded research projects focused on automation and robotics in agriculture. He has secured significant grants, including a $1.6M award for fruit-picking robotics, demonstrating strong research leadership. His collaborations span institutions and disciplines, particularly in agricultural machinery design and sensor network deployment. He leads research efforts in agricultural automation, particularly through projects involving robot-aided harvesting , orchard navigation systems , and wearable worker tracking devices . His lab contributes to the development of intelligent systems for sustainable farming, integrating mechanical, electronic, and computational components.
Zhenqiang Ma is a Lynn H. Matthias Professor and Vilas Distinguished Achievement Professor in the Department of Electrical and Computer Engineering at the University of Wisconsin-Madison. His work bridges semiconductor physics, flexible electronics, and bioelectronics, with affiliations in Nuclear Engineering & Engineering Physics and Materials Science & Engineering. Education: PhD, M.S.E., and MS in Electrical Engineering from University of Michigan; BS and BE in Applied Physics and Electrical Engineering from Tsinghua University His research focuses on lattice-mismatched semiconductor heterostructures, flexible/stretchable electronics, neural interfaces, optoelectronic devices, and semiconductor processing. Articles highlight UV Micro-LEDs, heterojunction diodes, and stretchable microwave components. Scientific Awards: PECASE, Fellowships from AAAS, IEEE, and 5 other societies, Marquis Lifetime Achievement Award, WARF Innovation Award Finalist, and 8+ Best Paper Awards Ma has supervised 60+ scientists/postdocs/PhDs and collaborates with biomedical engineering and medical school experts on vision restoration scaffolds and neuroprosthetic electrodes.
Mustapha C.E. Yagoub is a Full Professor at the School of Electrical Engineering and Computer Science, University of Ottawa, with over 500 publications in RF/microwave CAD, RFID systems, neural networks, and applied electromagnetics. He leads research in the ELEMENT Laboratory and RFM Research Group , focusing on wireless communication systems and nonlinear device modeling. PhD in Electronics (Institut National Polytechnique de Toulouse, 1994) Magister in Telecommunications (École Nationale Polytechnique d'Alger, 1987) Dipl.-Ing. in Electronics (École Nationale Polytechnique d'Alger, 1979) His research bridges Microwave Circuit Design with Artificial Intelligence , including applications in Energy Conservation and Telecommunication Systems . Key trends in his publications include hybrid modeling techniques combining Neural Networks with Computational Electromagnetics for optimizing Antenna Design and RF Components . He is a Senior Member of IEEE and licensed with the Professional Engineers of Ontario and Ordre des Ingénieurs du Québec . His lab teams focus on High-Tc Superconducting Devices and Directional Antenna Optimization for RFID networks.
Dennis Prather is the Engineering Alumni Distinguished Professor at the University of Delaware's Department of Electrical and Computer Engineering within the College of Engineering. A retired U.S. Navy Captain with over 38 years of service, he holds BSEE, MSEE, and PhD degrees from the University of Maryland. His research focuses on RF-photonic devices, including ultra-high bandwidth modulators, silicon photonic RF sources, and integrated RF-photonic phased array antennas. He leads projects in Silicon Photonics, Conformal Antennas, Passive Millimeter-wave Imaging, and High-Frequency Optical Modulators. Professor Prather is an IEEE Fellow, SPIE Fellow, OSA Fellow, and National Academy of Inventors Fellow. He has authored over 650 papers, holds 40+ patents, and authored 16 books/chapters. His work emphasizes photonic integration for advanced phased array systems, microwave photonic radiometry, and high-power photodiode engineering. Current research includes ultra-wideband photonic receivers, holographic beam conversion, and thin-film lithium niobate modulators. His lab develops fabrication processes for state-of-the-art devices, with applications in imaging, communications, and radar. Notable projects include modular antenna systems, optically-fed phased arrays, and photonics-based microwave radiometers. Awards include multiple fellowships recognizing his contributions to photonics and engineering innovation.
Dr. Vishnu Unnikrishnan is an Assistant Professor at the Department of Electrical Engineering, Tampere University, within the Faculty of Information Technology and Communication Sciences. His research focuses on energy-efficient high-performance analog/digital/RF integrated circuits and systems in nanometer-scale CMOS technologies. Key areas include time-based data conversion, high-speed serial links, and 5G/6G wireless transceivers. He leads research on analog interfaces using digital/switch components and collaborates with the SoC Hub ecosystem to bridge academic and industrial interests in system-on-chip design. He has secured significant funding, including an EU Marie Curie ITN grant (SMArT) worth €818k and an Academy of Finland Project (2021) of €821k. His work spans over 40 peer-reviewed publications, emphasizing innovations in time-based ADCs, beamforming receivers, and RF system design. Dr. Unnikrishnan actively supervises doctoral and postdoctoral researchers, offers paid master's theses and summer jobs in IC design, and collaborates with industry through the SoC Hub. His research aims to advance cross-technology portable analog interfaces and high-performance mixed-signal systems.
Muhammed Said Boybay is an Associate Professor at the Department of Electrical and Electronics Engineering, Faculty of Engineering, Iğdır University. His academic journey includes a PhD in Electrical and Computer Engineering from the University of Waterloo (2004-2009), with a thesis on 'Sensitivity Enhancement of Near Field Probes Using Negative Materials', and a Bachelor's degree from Bilkent University's Electrical and Electronics Engineering program (2000-2004). His research focuses on microwave engineering, metamaterials, microfluidics, and sensing technologies. He has pioneered work on microwave-based microfluidic systems, metamaterial sensors for material characterization, and non-destructive evaluation techniques using resonant structures. His contributions include developing high-throughput sensing methods for individual droplets in microfluidic devices and integrating microwave heaters for thermo-capillary mixing. Boybay has authored over 20 peer-reviewed articles, with recent work emphasizing hydrogen sensing via palladium-based resonators and beam steering using dispersive superstrates. He has supervised three graduate students, including doctoral candidate Gürkan Yeşilöz and master's graduates Hasan Önder Yılmaz and Ayşegül Musul. He has held administrative roles such as Head of the Department of Electrical and Electronics Engineering at Iğdır University and Deputy Dean at International Antalya University. His teaching spans undergraduate courses like Electromagnetic Field Theory and graduate modules in Antenna Engineering and RF Design. Notably, he contributed a chapter on 'Microwave in Microfluidics' to the 2nd Edition of the Encyclopedia of Microfluidics and Nanofluidics .
Thomas Ebel is Professor and Head of the Centre for Industrial Electronics at the University of Southern Denmark (SDU) , Institute of Mechanical and Electrical Engineering. A leading expert in power electronics, high-voltage engineering and capacitor technology, he directs large, multi-partner research projects and teaches/supervises at both graduate and PhD levels. Education & Career Path Prof. Ebel holds the academic title Dr. rer. nat. and has been appointed full Professor at SDU. He concurrently serves as Head of Section at the Centre for Industrial Electronics, orchestrating cross-disciplinary research teams and infrastructure. Research Interests Power Electronics & Power Conversion: advanced converter topologies, WBG devices (GaN, SiC), high-frequency magnetics, grid-forming control. Dielectric Materials & Capacitors: polymer and hybrid nanocomposite dielectrics, self-healing metallized film capacitors, aluminium electrolytic capacitors, lifetime modelling and reliability. High-Voltage Engineering & Breakdown Physics: breakdown mechanisms in nanocomposites, corona and partial discharge, insulation coordination. IoT & Data-Driven Monitoring: real-time condition monitoring, digital twins, data-driven RUL estimation for power components. Publication Trends Across 133 research outputs (2018-2025) the dominant themes are (i) construction and reliability of 700 V-class aluminium polymer electrolytic capacitors, (ii) GaN-based power converter optimisation, (iii) hybrid AC/DC microgrid control and harmonic mitigation, and (iv) nanocomposite dielectrics for next-generation capacitors. The 15 most recent articles (2025) reinforce these directions while adding socio-technical energy analytics and green-vehicle powertrains. Scientific Awards Tek Innovation Prize 2023 – awarded for outstanding contributions to power electronics research and industrial innovation. Advising & Funding Prof. Ebel currently supervises ~10 PhD candidates and post-docs including L. Tavares, M. A. Khan, R. Maheshwari, S. Mateen, A. N. Pinky and others. He is Principal Investigator or Head Coordinator of six active projects (2024-2027) valued at >€8 M, spanning ultra-high-efficiency drives, hydrogen-PtX converters, self-healing capacitors and hybrid power-plant concepts. Laboratory & Teams He heads the High-Voltage Power Electronics Laboratory at SDU, equipped with 700 V/200 A capacitor test rigs, GaN/SiC converter prototyping benches, and environmental chambers for accelerated ageing studies. The centre collaborates with 20+ industrial partners and coordinates the international IEA Wind Task 50 on hybrid power plants.