Dr. hab. inż. Jacek Rak serves as Associate Professor and Head of the Department of Teleinformatics at the Faculty of Electronics, Telecommunications and Informatics, Gdańsk University of Technology, where he maintains an active academic position with office location in Building A and direct contact via phone (58) 347 1660. His research spans critical domains of modern telecommunications infrastructure: Network architecture design and optimization Secure data transmission protocols Real-time communication systems Converged telecommunication networks Wireless and mobile networking Quality of service management No scientific awards or honors were documented in the source material. Student advisement details, research grant history, and laboratory affiliations remain unspecified in the available institutional profile, though his departmental leadership role indicates significant administrative responsibilities within the university's telecommunications research ecosystem.
Dr. Artur Tomaszewski is an Associate Professor at Gdańsk University of Technology, working in the Department of Teleinformatics within the Faculty of Electronics, Telecommunications and Informatics. His office is located in Building A, room 149. His research interests include: Computer Networking Software-Defined Networking (SDN) Wireless Communication Network Optimization 5G Networks Network Security Dr. Tomaszewski's recent research focuses on advanced networking technologies, with particular emphasis on controller placement optimization in SDN architectures, coordinated spatial reuse in Wi-Fi networks, and network function virtualization in 5G systems. His work combines theoretical optimization approaches with practical networking applications, addressing challenges in network reliability, performance, and security. His publications from 2021-2025 demonstrate a consistent research trajectory in network optimization, with increasing focus on machine learning applications in networking and next-generation Wi-Fi standards. He has contributed to both theoretical frameworks and practical implementations in the field of computer networking. Dr. Tomaszewski collaborates with researchers internationally, as evidenced by his co-authorship on publications with scholars from various institutions worldwide. Contact information: Email: artur.tomaszewski@pg.edu.pl
Dr. hab. inż. Grzegorz Fotyga serves as an Associate Professor in the Department of Microwave and Antenna Engineering at the Faculty of Electronics, Telecommunications and Informatics, Gdańsk University of Technology. His academic position places him within one of Poland's leading technical universities with a strong focus on engineering and applied sciences. Professor Fotyga's research spans multiple domains within electrical engineering and signal processing. His primary research interests include microwave engineering, signal processing algorithms, wireless communication systems, and optimization techniques for high-frequency applications. His work demonstrates particular expertise in developing novel algorithms for signal detection and analysis, with recent applications in drone signal identification and wireless body area networks for healthcare applications. The analysis of his recent publications (2022-2024) reveals a strong research trajectory focused on practical applications of signal processing and microwave engineering. His work bridges theoretical algorithm development with real-world implementation, particularly evident in his research on drone signal detection systems and wireless networks for disease prevention. The publications demonstrate consistent collaboration with colleagues at Gdańsk University of Technology across multiple projects. Professor Fotyga maintains an active research program with five documented publications in the last two years across reputable journals including IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES and SENSORS. His research shows a clear progression from fundamental microwave engineering topics toward more applied security and healthcare applications of wireless technologies.
Dr. Łukasz Kulas serves as an Associate Professor at the Department of Microwave and Antenna Engineering within the Faculty of Electronics, Telecommunications and Informatics at Gdańsk University of Technology. His research spans antenna design, wireless communications, and RFID systems with emphasis on millimeter wave applications and chipless RFID technology. His primary research interests include millimeter wave antenna arrays, wireless connectivity testing methodologies, and AI integration in communication networks. Key contributions involve LTCC-based Van Atta array design, low-cost Bluetooth testbed development, and radar cross section enhancement using 3D printed lenses for RFID applications. Recent publications reveal a strong trend toward applying artificial intelligence to industrial wireless systems (InSecTT project) and avionics intra-communications, while advancing fundamental antenna technologies for harsh environments. The work demonstrates consistent focus on practical implementations of wireless solutions across multiple frequency bands. No scientific awards were documented in the source material. No information regarding student supervision or research grants was provided in the available text. Dr. Kulas participates in collaborative research projects related to wireless communications infrastructure, though specific laboratory facilities or team structures were not detailed in the source documentation.
Dr. Adam Lamęcki serves as an Associate Professor at Gdańsk University of Technology within the Faculty of Electronics, Telecommunications and Informatics. His primary affiliation is with the Department of Microwave and Antenna Engineering, where he conducts research on advanced microwave components and electromagnetic systems. Contact information includes email adalamec@pg.edu.pl and phone +48 58 347 2917. His research focuses on microwave filter design , antenna engineering , and computational electromagnetics , with particular expertise in 3D-printed components, dispersive-delay structures, and multipactor simulation. Recent work demonstrates innovation in coaxial-line filters for Earth observation systems, compact beam-switching antennas for ISM bands, and self-equalized Chebyshev microwave filters using frequency-variant coupling networks. Analysis of his 2024-2025 publications reveals strong emphasis on practical RF component implementation and open-source simulation tools , with applications spanning telecommunications, satellite systems, and industrial microwave devices. His work consistently bridges theoretical microwave theory with experimental validation. Lamęcki leads significant research projects funded through Poland's National Science Center, including PRELUDIUM BIS and OPUS grants focused on advanced mesh deformation techniques for electromagnetic structure optimization. His projects operate within the Faculty of Electronics, Telecommunications and Informatics under agreements UMO-2020/39/O/ST7/02897 and UMO-2013/09/B/ST7/04202.
Dr. Krzysztof Nyka serves as an Associate Professor at the Department of Microwave and Antenna Engineering within the Faculty of Electronics, Telecommunications and Informatics at Gdańsk University of Technology. His institutional affiliation includes office location in Building A of the Faculty with direct contact via phone (+48 58 347 1659) and email. His research spans critical domains of modern telecommunications infrastructure: Microwave circuit design and optimization Advanced antenna array development Electromagnetic wave propagation analysis RF system integration for 5G/6G networks Computational electromagnetics modeling Miniaturized antenna technologies While publication details aren't enumerated in the source material, his departmental focus indicates significant contributions to antenna theory and microwave engineering applications. No scientific awards or student advisement records are documented in the provided institutional profile.
Dr. Piotr Sypek is an Assistant Professor at the Department of Microwave and Antenna Engineering, Faculty of Electronics Telecommunications and Informatics, Gdańsk University of Technology. His work focuses on computational methods for electromagnetic simulations, particularly in microwave engineering applications. Dr. Sypek obtained his doctoral degree (dr inż.) in Electronics (Technology) from the Faculty of Electronics Telecommunications and Informatics at Gdańsk University of Technology on July 10, 2012. His research spans several key areas in computational electromagnetics and high-performance computing. Dr. Sypek specializes in microwave engineering , computational electromagnetics , parallel computing , GPU computing , finite element method , and finite-difference methods . His work focuses on developing efficient computational techniques for electromagnetic simulations, with particular emphasis on accelerating finite element methods using modern hardware architectures including GPUs and Intel Optane persistent memory. Analysis of Dr. Sypek's publication record from 2005 to 2022 reveals a consistent focus on computational methods for microwave engineering applications. His research trajectory shows an evolution from fundamental filter design techniques to increasingly sophisticated computational approaches involving model order reduction, GPU acceleration, and memory optimization for large-scale electromagnetic simulations. The interdisciplinary nature of his work bridges electrical engineering, computational science, and high-performance computing. Dr. Sypek has made significant contributions to the field of computational electromagnetics through his publications in prestigious journals including IEEE Transactions on Microwave Theory and Techniques and Radioengineering. While specific details about his advising activities and research grants are not explicitly mentioned in the available information, Dr. Sypek's collaborative publication record suggests active involvement in research teams at Gdańsk University of Technology, particularly within the Department of Microwave and Antenna Engineering. Dr. Sypek appears to be a key contributor to research teams focused on computational electromagnetics at Gdańsk University of Technology, working closely with colleagues including A. Lamecki, M. Mrozowski, and others on projects related to finite element analysis, GPU acceleration, and microwave device simulation.
Łukasz Gołuński is an Assistant Professor at the Department of Microelectronic Systems, Faculty of Electronics Telecommunications and Informatics, Gdańsk University of Technology. His research bridges two specialized domains: antenna design for modern communication systems and boron-doped diamond technology for electrochemical applications. His primary research focuses on advanced antenna design , particularly for 5G/6G applications, where he develops innovative 3D-printable metasurfaces and metastructures for beam-steering systems. Simultaneously, he investigates boron-doped diamond (BDD) technology for electrochemical sensors, studying growth processes, electrical properties, and applications in harsh environments. His work demonstrates strong interdisciplinary connections between materials science and microwave engineering. Analysis of his 23 publications reveals a clear research trajectory from fundamental material science (diamond film growth and characterization) toward applied antenna engineering. Recent work (2023-2024) emphasizes cost-efficient optimization methods using surrogate modeling and 3D printing technologies, addressing critical challenges in modern antenna design while considering manufacturing constraints. Dr. Gołuński successfully managed the ETIUDA-funded project 'Method of manufacturing microsensors and electrochemical electrodes through selective growth of polycrystalline diamond layers masked with silicon dioxide layers' in the Department of Metrology and Optoelectronics since September 2016. His scholarly output spans high-impact journals including IEEE Access, Scientific Reports, Sensors, and Diamond and Related Materials. He is actively involved in teaching with 26 documented teaching activities at Gdańsk University of Technology. His laboratory work centers on microelectronic systems, particularly antenna design and diamond-based electrochemical sensors, utilizing specialized infrastructure for diamond film growth, microwave characterization, and electromagnetic simulation.
Dariusz Palmowski is an Assistant lecturer and Chief engineering and technical specialist at the Department of Metrology and Optoelectronics, Faculty of Electronics Telecommunications and Informatics, Gdańsk University of Technology. His work focuses on the intersection of electrical engineering, metrology, and energy systems, with particular expertise in micro-energy measurement techniques. Dr. Palmowski's primary research interests include: Micro-energy measurement for low-power devices Energy harvesting systems evaluation Real-time operating systems performance analysis Impedance measurement techniques Sensor technology development Automated student assessment methodologies His publication record demonstrates a consistent focus on developing and testing methods for measuring extremely small energy consumption, which is critical for the advancement of energy harvesting technologies. Over the past decade, his research has evolved from fundamental measurement techniques to more complex applications in sensor networks and medical diagnostics. A notable trend in his work is the development of specialized test equipment, particularly microcontroller-based systems that can simulate various energy consumption profiles for validation purposes. Dr. Palmowski has made significant contributions to the field of dynamic electrochemical impedance spectroscopy, developing programmable models and testing methodologies that have advanced measurement capabilities in this specialized area. His interdisciplinary work bridges electrical engineering with applications in medical diagnostics through breath analysis technologies. His teaching activities include the Metrology course taught during the third semester of studies at three different programs: Electronics and Telecommunications, Biomedical Engineering, and Automation, Cybernetics and Robotics. His research on automated verification of student work reflects his engagement with educational technology and assessment methodologies.
Michał Wójcik serves as Assistant Lecturer in the Department of Computer Systems Architecture within the Faculty of Electronics, Telecommunications and Informatics at Gdańsk University of Technology. Concurrently, he holds a technical role as Senior Specialist – Design Programmer in the Team for Development and Maintenance of Central University Systems (CUI), operating from Building A of the Faculty (room 523) with contact number 583471867. His research bridges computer science with environmental and business applications, focusing on Software Engineering (RESTful systems, Jakarta EE), High Performance Computing (parallel application simulation), and Environmental Informatics (marine forecasting, benthic habitat mapping). Key projects include the FindFISH numerical forecasting platform for fisheries and MERPSYS simulation environment for HPC systems, demonstrating strong interdisciplinary collaboration. Analysis of his 2017-2024 publications reveals evolving expertise from core HPC simulation toward applied environmental informatics, with recent work emphasizing open innovation competence profiling and marine ecosystem modeling. His publications consistently address real-world problems through computational solutions, particularly in Baltic Sea environmental monitoring and multi-partner innovation ecosystems.
Prof. Izabela Lubowiecka serves as a Professor at the Department of Structural Mechanics within the Faculty of Civil and Environmental Engineering at Gdańsk University of Technology. Her office is located in the Main Building (room 467A) with contact details including email lubow@pg.edu.pl and phone (58) 348 64 08. She maintains an active research profile with current projects and recent publications through 2025. Her research spans computational biomechanics with specific focus on abdominal wall mechanics, hernia repair systems, and temporomandibular joint analysis. She integrates structural engineering principles with medical applications through advanced computational modeling, uncertainty quantification, and machine learning techniques. Key methodologies include Self-Organising Maps for biomechanical data clustering and digital image correlation for in vivo strain analysis, targeting improvements in medical device design and surgical outcomes. Recent publications (2023-2025) demonstrate consistent interdisciplinary work bridging engineering and clinical medicine. Core themes include mechanical compatibility optimization of hernia implants, failure analysis of surgical mesh systems, and machine learning applications for identifying biomechanically similar tissue regions. This research emphasizes patient-specific modeling through uncertainty quantification and sensitivity analysis to address clinical challenges like hernia recurrence. Prof. Lubowiecka secures significant research funding through national programs: Mechanics of anterior abdominal wall in optimisation of hernia treatment : OPUS project (UMO-2017/27/B/ST8/02518) since 2018 3D-JAW : TMJ modeling for dental applications (POIR.04.01.02-00-0029/17-00) since 2017 Geometric-strength analysis of historical carpentry joints : OPUS project (UMO-2015/17/B/ST8/03260) since 2016 She leads a research team collaborating with medical professionals on translating computational biomechanics into clinical solutions for hernia repair and dental prosthetics, with emphasis on practical implementation of research findings.
Michał Baranowski serves as an Assistant lecturer at the Department of Microwave and Antenna Engineering within the Faculty of Electronics Telecommunications and Informatics at Gdańsk University of Technology since 2021. He is simultaneously pursuing his PhD at the same institution, demonstrating a strong commitment to both teaching and research in microwave engineering. His research interests focus on advanced microwave component design, particularly in the areas of microwave filters, design optimization techniques, electronic design automation, finite element method applications, computational electromagnetics, and specialized microwave design methodologies. His work bridges theoretical concepts with practical manufacturing approaches, especially regarding additive manufacturing techniques for microwave components. Baranowski's publication record (13 papers from 2020-2025) reveals a clear research trajectory centered on innovative approaches to microwave filter design and waveguide component manufacturing. His most recent work (2024-2025) emphasizes 3D-printed microwave components, shape deformation techniques for resonator design, and methods to improve surface quality of additively manufactured waveguides. This research has direct applications in satellite communications, Earth observation systems, and 5G technology infrastructure. His technical expertise spans computational electromagnetics, optimization algorithms, and advanced manufacturing techniques for high-frequency components, with a particular emphasis on making these technologies more accessible through open platform tools and cost-effective manufacturing approaches. As an active researcher and educator, Baranowski contributes to both the theoretical advancement and practical implementation of microwave engineering solutions, with his work appearing in prestigious journals including IEEE Microwave and Wireless Technology Letters, IEEE Transactions on Microwave Theory and Techniques, and IEEE Access.
Dr. Robert Ostrowski serves as an Assistant Professor at the Department of Algorithms and System Modeling within the Faculty of Electronics, Telecommunications and Informatics at Gdańsk University of Technology. His academic work focuses on theoretical computer science with emphasis on graph-based network problems. His research primarily explores graph theory and distributed algorithms , specializing in multi-agent systems for network security applications. Key investigation areas include heterogeneous agent searching, energy-constrained mobile agents in tree networks, and non-monotone graph searching strategies where traditional monotonicity assumptions do not hold. His work bridges theoretical foundations with practical network security implementations. Dr. Ostrowski's publication record demonstrates consistent focus on algorithmic solutions for network problems. His recent work shows increasing specialization in heterogeneous agent models and energy-aware protocols, with publications appearing in journals like Journal of Computer and System Sciences and Theoretical Computer Science . His academic advising and grant activities are not publicly documented in available sources. Similarly, no scientific awards or fellowships are mentioned in the provided materials.
Krzysztof Oliński serves as an Assistant Professor at the Department of Decision Systems and Robotics within the Faculty of Electronics Telecommunications and Informatics at Gdańsk University of Technology. His academic profile demonstrates a strong focus on control engineering with particular expertise in optimization methodologies for complex dynamic systems. Dr. Oliński's research centers on discrete optimization techniques applied to control theory, with significant contributions to optimal control strategies for nonlinear dynamic processes. His work bridges theoretical foundations with practical industrial applications, particularly in manufacturing and pipeline systems. He has developed innovative approaches including graph-based representations of state-space dynamics and agent-based optimization methods. His keyword profile reveals expertise in computational intelligence, swarm algorithms, and intelligent manufacturing systems, reflecting his interdisciplinary approach to solving complex control problems. An analysis of his publication history from 2007-2012 shows a clear research trajectory evolving from foundational work on fault-tolerant control systems to more sophisticated methodologies like the 'toolgraph' approach. His early publications focused on discrete optimization techniques for control planning, while his later work expanded to include agent-based strategies and integration of natural and artificial intelligence in production systems. His most impactful contributions involve novel representations of state-space dynamics through flow graph structures that enable more effective control strategy design. Dr. Oliński maintains an active research presence with publications in both Polish and international journals including Mathematical Problems in Engineering and the International Journal of Applied Mathematics and Computer Science. His work demonstrates consistent theoretical rigor combined with practical relevance to industrial applications, particularly in intelligent manufacturing systems and pipeline dynamics modeling.
Dr. Jakub Wszołek is an Assistant Professor at Gdańsk University of Technology, working in the Department of Decision Systems and Robotics within the Faculty of Electronics, Telecommunications and Informatics. His research focuses on intelligent systems, robotics, and network-based monitoring solutions for complex industrial applications. Dr. Wszołek's research interests include: Robotics and decision systems Intelligent building management systems Network monitoring and distributed control systems Electrical circuit design and analysis Economic lighting analysis for transportation infrastructure Web-based simulation environments His work demonstrates a strong focus on practical applications of intelligent systems in building management, industrial monitoring, and electrical engineering. Dr. Wszołek has developed innovative solutions like the Network Object Monitor (SMO) for autonomous diagnostic, monitoring, control and management systems for intelligent buildings, as well as web-based tools like SchematicLab for electrical circuit design. Professional recognitions: No specific awards mentioned in available information Dr. Wszołek actively contributes to research in intelligent systems and has collaborated with researchers like Z. Kowalczuk and A. Cichosz on various projects related to network monitoring, intelligent building management, and electrical circuit design tools. He is involved with research projects focused on developing simulation environments for economic lighting analysis of highways and creating web-based tools for electrical circuit design and analysis.