Luigi Fortuna | Engineering | Academic Excellence Recognition Award

Prof. Luigi Fortuna | Engineering | Academic Excellence Recognition Award

Free Scientist at University of Catania | Italy

Prof. Luigi Fortuna is a distinguished scholar in Electrical Engineering whose career has been defined by groundbreaking contributions to control theory, nonlinear dynamics, and complex systems engineering. His research has seamlessly integrated theoretical advancements with real-world applications in areas such as plasma control, bio-inspired robotics, and semiconductor innovation. With an exceptional publication record of more than 750 articles, over 13,000 citations, an H-index exceeding 60, and authorship of 24 books, he has established himself as a global leader in his field. He has supervised hundreds of Master’s and Ph.D. students, shaping the future of engineering research worldwide. Recognized internationally, he is an IEEE Life Fellow, IEICE Fellow, and AIAA Fellow, as well as an influential editor, keynote speaker, and project leader in European and global collaborations. His achievements highlight a career dedicated not only to advancing knowledge but also to fostering innovation, mentorship, and international scientific cooperation.

Professional Profiles

Google Scholar | Scopus Profile | ORCID Profile 

Education

Prof. Luigi Fortuna pursued his higher education in Electrical Engineering at the University of Catania, where he graduated with distinction (cum laude). His academic foundation was built upon a strong interest in automation, system theory, and nonlinear dynamics, which would later define his career. Throughout his academic journey, he developed expertise in robust control, complex systems, and bioengineering, blending mathematics, engineering, and physics into multidisciplinary research. He further enhanced his academic profile through visiting researcher roles at leading institutions such as the Joint European Torus (JET) in the United Kingdom, where he contributed to plasma control systems. His education was not limited to technical mastery but also cultivated leadership and vision, preparing him to take on significant roles in academia and international research projects. This strong academic background provided the essential base for his contributions to advanced system theory, innovation in nonlinear circuits, and the development of bio-inspired robotic systems.

Experience

Prof. Luigi Fortuna has a career spanning decades of teaching, research, and leadership in Electrical Engineering and System Theory. He has served as a Full Professor of System Theory at the University of Catania, where he also held leadership roles such as Dean of the Faculty of Engineering and Coordinator of Ph.D. programs. His teaching experience includes delivering more than seventy courses and supervising hundreds of theses, shaping generations of engineers and researchers. Beyond academia, he has played a vital role in advancing international research collaborations through projects supported by the European Union, national funding bodies, and bilateral agreements with global partners. His contributions extend to innovation and technology transfer, having co-invented eleven industrial patents and directed research laboratories in complex systems, microelectronics, and robotics. As a speaker and organizer of major international conferences, he has strengthened global scientific exchange, while his editorial and evaluation board responsibilities demonstrate his influence on research policy.

Research Interest

Prof. Fortuna’s research interests cover a wide spectrum of areas within Electrical Engineering and System Theory, with a strong focus on bridging theoretical innovation with practical applications. His work in robust control and model order reduction has contributed to advancing efficient system design, while his exploration of nonlinear circuits has provided insights into chaos, synchronization, and emerging applications in communications and signal processing. He has also made pioneering contributions to bio-inspired robotics, developing innovative locomotion and control mechanisms inspired by nature. Plasma control for Tokamak devices represents another area where his expertise has significantly influenced energy research and fusion technologies. Furthermore, his interest in complex system engineering and cellular neural networks has expanded the understanding of how large-scale interconnected systems can be modeled and controlled. His interdisciplinary approach continues to drive breakthroughs at the intersection of electronics, control systems, and bioengineering, making his work globally relevant across academia and industry.

Awards and Honors

Prof. Fortuna’s illustrious career has been recognized through numerous awards, fellowships, and honors from prestigious scientific communities. He is an IEEE Life Fellow, reflecting his sustained and impactful contributions to the field of circuits and systems. In addition, he has been honored as a Fellow of both the Institute of Electronics, Information and Communication Engineers (IEICE) and the American Institute of Aeronautics and Astronautics (AIAA), affirming the international breadth of his influence. He has served as Distinguished Lecturer for IEEE, delivered plenary talks at renowned global conferences, and been invited to share his expertise across leading institutions in Asia, Europe, Africa, and the United States. His service as an editor and board member for high-impact journals, as well as chairmanship of major IEEE and IFAC conferences, further highlight his professional standing. These distinctions underscore his dual excellence in advancing research and fostering international collaboration within the global scientific community.

Research Skills

Prof. Fortuna possesses a rich set of research skills that have allowed him to contribute extensively across multiple domains of engineering and applied sciences. He is highly skilled in system modeling, control design, and nonlinear dynamics, with expertise in applying mathematical frameworks to solve complex engineering challenges. His proficiency in advanced computational tools, including MATLAB-based simulations, supports his work in model order reduction, robust control, and bio-inspired system development. He has also demonstrated remarkable innovation in circuit design, chaos theory applications, and bio-robotics, integrating theoretical research with experimental implementations. His ability to lead multidisciplinary teams and manage large-scale international projects reflects strong organizational and leadership skills. Additionally, his patent portfolio illustrates his talent in technology transfer and applied research. With editorial experience and peer-review expertise, he also demonstrates critical evaluation and scientific communication skills, making him a versatile researcher and mentor within academia, industry, and professional societies.

Publication Top Notes

Title: Fractional order systems: modeling and control applications
Authors: R Caponetto, G Dongola, L Fortuna, I Petras
Year: 2010
Citations: 1427

Title: Soft Sensor for Monitoring and Control of Industrial Processes. In Advances in Industrial Control Series (MJ Grimble, MA Johnson, eds.)
Authors: L Fortuna, S Graziani, A Rizzo, MG Xibilia
Year: 2007
Citations: 1187

Title: Chaotic sequences to improve the performance of evolutionary algorithms
Authors: R Caponetto, L Fortuna, S Fazzino, MG Xibilia
Year: 2003
Citations: 663

Title: Timing of surgery following SARS‐CoV‐2 infection: an international prospective cohort study
Authors: GS Collaborative, COVIDSurg Collaborative
Year: 2021
Citations: 616

Title: Soft sensors for product quality monitoring in debutanizer distillation columns
Authors: L Fortuna, S Graziani, MG Xibilia
Year: 2005
Citations: 425

Title: Model order reduction techniques with applications in electrical engineering
Authors: L Fortuna, G Nunnari, A Gallo
Year: 2012
Citations: 331

Title: Effect of COVID-19 pandemic lockdowns on planned cancer surgery for 15 tumour types in 61 countries: an international, prospective, cohort study
Authors: J Glasbey, A Ademuyiwa, A Adisa, E AlAmeer, AP Arnaud, F Ayasra, …
Year: 2021
Citations: 306

Title: A chaotic circuit based on Hewlett-Packard memristor
Authors: A Buscarino, L Fortuna, M Frasca, L Valentina Gambuzza
Year: 2012
Citations: 305

Title: Effects of mobility in a population of prisoner’s dilemma players
Authors: S Meloni, A Buscarino, L Fortuna, M Frasca, J Gómez-Gardeñes, V Latora, …
Year: 2009
Citations: 298

Title: Elective cancer surgery in COVID-19–free surgical pathways during the SARS-CoV-2 pandemic: an international, multicenter, comparative cohort study
Authors: JC Glasbey, D Nepogodiev, JFF Simoes, O Omar, E Li, ML Venn, PGDME, …
Year: 2021
Citations: 292

Title: Chua’s circuit implementations: yesterday, today and tomorrow
Authors: L Fortuna, M Frasca, MG Xibilia
Year: 2009
Citations: 279

Title: Bifurcation and chaos in noninteger order cellular neural networks
Authors: P Arena, R Caponetto, L Fortuna, D Porto
Year: 1998
Citations: 239

Title: Chua’s circuit can be generated by CNN cells
Authors: P Arena, S Baglio, L Fortuna, G Manganaro
Year: 2002
Citations: 225

Conclusion

Prof. Luigi Fortuna is highly deserving of the Academic Excellence Recognition Award. His pioneering work in nonlinear circuits, robust control, and bio-inspired systems has had a lasting impact on both academia and industry. With over four decades of leadership, 758 publications, multiple books, patents, and global collaborations, he exemplifies the very essence of academic excellence. His contributions to training the next generation of scholars, advancing scientific innovation, and strengthening international cooperation make him a model candidate for recognition. Looking ahead, his expertise and leadership will continue to shape the future of engineering, complex systems, and global research networks.

Mohammed Sulaiman | Engineering | Best Researcher Award

Dr. Mohammed Sulaiman | Engineering | Best Researcher Award

University Lecturer at Erbil Polytechnic University, Iraq

Dr. Mohammed Abdulqader Sulaiman is an accomplished researcher and academic specializing in Thermal Power Engineering. With a Ph.D. from Erbil Polytechnic University (2024), he has dedicated his career to advancing energy efficiency and cooling technologies. His research focuses on novel evaporative cooling systems, reflected in multiple publications in reputable international journals. As a lecturer and former Deputy Head of the Mechanical and Energy Engineering Department, he has played a vital role in academic leadership, laboratory development, and student mentorship. Proficient in engineering software like MATLAB, AutoCAD, and ANSYS, he integrates practical and theoretical expertise in his work. His contributions to renewable energy and refrigeration technologies position him as a strong candidate for research recognition, with potential for further impact through high-impact publications, industry collaborations, and research grants.

Profession Profile

Education

Dr. Mohammed Abdulqader Sulaiman holds a Ph.D. in Thermal Power Engineering from Erbil Polytechnic University (2024), where he also earned his M.Sc. in Thermal Power Engineering in 2016 and his B.Sc. in Refrigeration and Air-Conditioning Engineering in 2012. His academic journey has been dedicated to energy efficiency, heat transfer, and sustainable cooling technologies. Through his advanced studies, he has developed expertise in renewable energy, thermodynamics, and innovative cooling systems, contributing to both theoretical advancements and practical applications in the field of mechanical and energy engineering.

Professional Experience

Dr. Mohammed Abdulqader Sulaiman has extensive professional experience in academia and research, primarily at Erbil Polytechnic University. Since 2012, he has been a lecturer in the Mechanical and Energy Engineering Department, specializing in thermodynamics, renewable energy, and heat transfer. He served as Deputy Head of the department from 2017 to 2021, overseeing academic programs and research initiatives. Additionally, he has held key leadership roles, including Head of Laboratories and Workshops and In-Charge of Engineering Laboratories, contributing to the development of research infrastructure. Dr. Sulaiman has also been an active member of various academic committees, including the Examination and Summer Training Committees, demonstrating his commitment to student mentorship and curriculum development. His expertise in MATLAB, AutoCAD, and ANSYS further enhances his contributions to engineering education and research.

Research Interest

Dr. Mohammed Abdulqader Sulaiman’s research interests lie in the fields of thermal power engineering, energy efficiency, and innovative cooling technologies. His work focuses on dew-point evaporative cooling systems, heat and mass transfer, and sustainable energy solutions, aiming to improve cooling performance while reducing energy consumption. He is particularly interested in renewable energy applications, including solar, hydropower, wind, and geothermal energy, as well as advancements in refrigeration and air-conditioning systems. His research integrates experimental and numerical analysis, utilizing computational tools such as MATLAB, AutoCAD, and ANSYS to develop innovative thermal management solutions. Through his studies, Dr. Sulaiman aims to contribute to the development of energy-efficient and environmentally friendly technologies, addressing the growing global

Award and Honor

Dr. Mohammed Abdulqader Sulaiman has been recognized for his contributions to research and academia through various awards and honors. His dedication to thermal power engineering and energy efficiency has earned him appreciation within the academic and research community. As a member of the Kurdistan Engineers Association and Kurdistan Teachers Union, he has been acknowledged for his role in advancing engineering education and research. His innovative work in dew-point evaporative cooling systems and renewable energy applications has been published in reputable international journals, showcasing his impact in the field. With a strong academic and research background, he is a promising candidate for prestigious awards such as the Best Researcher Award, recognizing his commitment to scientific advancements and sustainable engineering solutions.

Conclusion

Mohammed Abdulqader Sulaiman is a strong candidate for the Best Researcher Award due to his solid academic background, research contributions, and leadership roles. While there are areas for further development, his expertise in thermal power engineering, innovative research in evaporative cooling, and commitment to education make him a competitive nominee.

Publications Top Noted

  • Title: Experimental and numerical investigation of novel dew-point evaporative cooler with shell and tube design
    Authors: MA Sulaiman, HA Saber, HF Hasan, AC Benim
    Year: 2025
    Citations: –

  • Title: Performance analysis of novel dew point evaporative cooler with shell and tube design through different air-water flow configurations
    Authors: MA Sulaiman, AM Adham, HF Hasan, AC Benim, HA Anjal
    Year: 2023
    Citations: 6

  • Title: Evaluation of new dew point evaporative cooler heat and mass exchanger designs with different geometries
    Authors: MA Sulaiman, AM Adham
    Year: 2023
    Citations: 4

  • Title: Energy Performance Analysis of Dew Point Evaporative Cooler with Novel Heat and Mass Exchanger Design
    Authors: MA Sulaiman, AM Adham
    Year: 2023
    Citations: 1

  • Title: Assessing the Performance of Novel Dew Point Evaporative Cooler Considering the Climatic Conditions of Different Cities in Iraq
    Authors: MA Sulaiman, AM Adham
    Year: 2023
    Citations: 1

  • Title: Enhancement of the Overall Performance of Vapor Compression Refrigeration System (VCRS) using Environmentally Friendly Refrigerant and Jumping Capacitors – Experimental Study
    Authors: ZK Shakir, AM Adham, MA Sulaiman, NK Mohammed
    Year: 2020
    Citations: 3

  • Title: Thermal and Hydrodynamic Characteristics of Graphite-H2O and CuO-H2O Nanofluids in Microchannel Heat Sinks
    Authors: SFO Mohammed Abdulqader Sulaiman, Ahmed Mohammed Adham
    Year: 2020
    Citations: 1*

  • Title: Design of a Domestic Diffusion Absorption Refrigeration System Using Evolutionary Algorithm
    Authors: AM Adham, MA Sulaiman
    Year: 2017
    Citations: 6

Milad Jafarypouria | Engineering | Best Researcher Award

Dr. Milad Jafarypouria | Engineering | Best Researcher Award

Skoltech University at Author, Russia

Milad Jafarypouria is a Ph.D. candidate in Mathematics and Mechanics at Skolkovo Institute of Science and Technology (Skoltech), Moscow. His research spans composite materials, nanocomposites, and material mechanics, with a focus on the mechanical and electrical behavior of carbon nanotubes and epoxy resins. He has contributed to several high-impact publications and is involved in innovative work with patents pending. Milad’s research combines advanced computational modeling, experimental studies, and cutting-edge techniques like Python programming, ABAQUS analysis, and scanning electron microscopy. With a robust academic and research background, he demonstrates the potential for significant contributions to engineering and materials science.

Professional Profile

Education

Milad earned his Ph.D. in Mathematics and Mechanics from Skolkovo Institute of Science and Technology (Skoltech) in 2024, with a GPA of A. Before this, he completed his M.Sc. in Mechanical Engineering at Razi University, Kermanshah, Iran, graduating with a GPA of 3.72 in 2019. Milad’s undergraduate studies were completed at Malayer University, where he earned a B.Sc. in Mechanical Engineering with an impressive GPA of 3.96. His solid academic background forms the foundation of his research excellence and technical proficiency in the field.

Professional Experience

Milad has extensive research experience in the fields of material science and mechanical engineering. He has worked under the supervision of Dr. S. Abaimov and Stepan V. Lomov at Skoltech, focusing on the mechanical properties of composites, including the effect of fiber misalignment and diameter distribution on material stress concentrations. His work also includes experimental studies on carbon nanotube composites and epoxy resins. Previously, at Razi University, Milad worked on analytical modeling and numerical simulations related to low-velocity impact on composite materials. His expertise in programming, modeling, and experimental research enhances his ability to tackle complex material science challenges.

Research Interest

Milad Jafarypouria’s research primarily focuses on the mechanical and electrical behavior of composite materials, nanocomposites, and advanced materials science. His work explores the effects of fiber misalignment, fiber diameter distribution, and interfacial debonding in composite structures. Additionally, Milad investigates the temperature-dependent properties of carbon nanotube-based composites, including their Temperature Coefficient of Resistance (TCR). His research combines advanced computational techniques like Python programming and ABAQUS analysis with experimental studies on the behavior of epoxy resins and carbon nanotubes. Milad’s interdisciplinary approach allows him to bridge the gap between theoretical modeling and real-world applications, contributing to the development of next-generation composite materials for various engineering applications.

Awards and Honors

Milad Jafarypouria has received recognition for his exceptional academic and research accomplishments. He has been awarded a Ph.D. scholarship from Skolkovo Institute of Science and Technology (Skoltech) for his outstanding performance and contributions to the field of materials science. Additionally, Milad has received multiple academic distinctions during his M.Sc. and B.Sc. studies, including a high GPA and recognition for his research potential. His ongoing work, including patents and high-impact publications, further solidifies his reputation as a promising researcher in the fields of mechanical engineering and material science.

Conclusion

Milad Jafarypouria is a promising candidate for the Best Researcher Award due to his strong academic background, innovative research, and potential for high-impact contributions. His expertise in materials science, along with his interdisciplinary approach and promising patent work, makes him an excellent choice. To further enhance his candidacy, improving his English-speaking skills and increasing his international visibility could open new avenues for collaboration and recognition.

Publications Top Noted

  • Design and fabrication of robotic gripper for grasping in minimizing contact force
    • Authors: H. Heidari, M. Jafarypouria, S. Sharifi, M. Karami
    • Year: 2018
    • Cited by: 25
    • Journal: Advances in Space Research, 61(5), 1359-1370
  • Separating curing and temperature effects on the temperature coefficient of resistance for a single-walled carbon nanotube nanocomposite
    • Authors: M. Jafarypouria, B. Mahato, S. G. Abaimov
    • Year: 2023
    • Cited by: 9
    • Journal: Polymers, 15(2), 433
  • The effect of fibre misalignment in an impregnated fibre bundle on stress concentrations
    • Authors: M. Jafarypouria, S. V. Lomov, B. Mahato, S. G. Abaimov
    • Year: 2024
    • Cited by: 6
    • Journal: Composites Part A: Applied Science and Manufacturing, 178, 108001
  • Hierarchical toughening and self-diagnostic interleave for composite laminates manufactured from industrial carbon nanotube masterbatch
    • Authors: B. Mahato, S. V. Lomov, M. Jafarypouria, M. Owais, S. G. Abaimov
    • Year: 2023
    • Cited by: 6
    • Journal: Composites Science and Technology, 243, 110241
  • Design and fabrication of robotic gripper for robust grasping various objects in unstructured environments
    • Authors: H. Heidari, M. Jafarypouria, S. Sharifi, M. R. Karami
    • Year: 2016
    • Cited by: Not available
    • Journal: Modares Mechanical Engineering, 16(5), 241-250

Giada Kyaw Oo D’Amore | Engineering | Best Researcher Award

Dr. Giada Kyaw Oo D’Amore | Engineering | Best Researcher Award

Assegnista da Ricerca at Università di Trieste, Italy

Giada Kyaw Oo D’Amore is an esteemed researcher and professor in the field of industrial engineering, with a special focus on marine, mechanical, and energy engineering. She currently serves as a Professor on Contract at the University of Trieste and as a Research Fellow at the same institution. Over the years, Giada has demonstrated expertise in various engineering areas, including noise reduction technologies and metamaterials for marine applications. She has also worked in the industry as a Project Leader at Phononic Vibes s.r.l., contributing to national and international research projects. Giada’s research is widely published in prominent journals, and she holds several leadership positions, including guest editor roles for renowned journals. Her work continues to contribute to innovative solutions for sustainable engineering practices, particularly in marine and environmental applications.

Professional Profile

Education

Giada Kyaw Oo D’Amore holds a PhD in Industrial Engineering from the University of Trieste, specializing in mechanical, marine, energy, and production engineering. She completed her doctoral research from November 2018 to March 2022, deepening her expertise in advanced engineering solutions. Additionally, Giada earned a Master’s degree in Marine Engineering from the University of Trieste in 2018. This solid educational foundation has enabled her to combine theoretical knowledge with practical applications, particularly in marine and environmental engineering contexts. Her education has been pivotal in shaping her research contributions and professional pursuits.

Professional Experience

Giada Kyaw Oo D’Amore has an extensive professional background, with roles spanning academia and industry. She has been serving as a Professor on Contract at the University of Trieste since 2021, where she teaches and leads research projects. From 2023 to present, she has also held the position of Research Fellow at the university, focusing on innovative engineering applications. Giada’s industry experience includes a leadership role at Phononic Vibes s.r.l., a spin-off from Politecnico di Milano, where she led R&D projects for national and international calls. She began her career as a Junior R&D Developer at Materialscan s.r.l., a spin-off of the University of Trieste. Her professional work encompasses significant contributions to the fields of acoustic engineering, material science, and noise reduction technologies.

Awards and Honors

Giada Kyaw Oo D’Amore has garnered recognition for her groundbreaking work in marine and environmental engineering. Her contributions have been widely acknowledged, particularly in the realm of noise reduction technologies and the application of metamaterials for soundproofing in marine systems. In addition to her academic accolades, Giada has held various esteemed positions, including guest editor for renowned journals like Applied Sciences, where she edited special issues on engineering applications and finite element methods. Her work has also been featured in numerous leading international conferences and publications, underlining her impact on the field. Giada’s commitment to research excellence and her role in advancing sustainable engineering practices have earned her respect within the academic and industrial communities.

Research Interest

Giada Kyaw Oo D’Amore’s research interests lie at the intersection of industrial engineering, marine engineering, and energy sustainability. She focuses primarily on the development of innovative technologies for noise reduction and the application of metamaterials to improve acoustic performance, particularly in marine environments. Her research also delves into the optimization of after-treatment systems to reduce ships’ acoustic footprints and environmental impact. Giada’s expertise extends to numerical simulations, finite element analysis, and computational fluid dynamics, which she uses to model and optimize complex engineering systems. She is particularly interested in creating multifunctional solutions, such as marine scrubbers, that address both emission control and acoustic challenges. Her work is committed to advancing sustainable engineering solutions that minimize environmental and acoustic pollution in the marine sector.

Publications Top Noted

  • Title: A Design-Oriented Model for Transmission Loss Optimization in Marine DOCs
    Authors: Kašpar, J., Mauro, F., Biot, M., Rognoni, G., Kyaw Oo D’Amore, G.
    Year: 2024
    Citations: 0
  • Title: Application of Modal Analysis for the Vibrational Comfort Investigation on Board Ships: a Case Study
    Authors: Rognoni, G., Mažeika, P., D’Amore, G.K.O., Djačkov, V., Biot, M.
    Year: 2024
    Citations: 0
  • Title: Numerical study on modelling perforated elements using porous baffle interface and porous region
    Authors: Kyaw Oo D’Amore, G., Mauro, F.
    Year: 2023
    Citations: 5
  • Title: Integration and optimization of the after-treatments systems to reduce the acoustic footprint of the ships
    Authors: Kyaw Oo D’Amore, G., Morgut, M., Biot, M., Mauro, F., Kašpar, J.
    Year: 2023
    Citations: 2
  • Title: Investigation on the Impact of a Metamaterial Solution for the Mitigation of Noise Radiated by a Ship Panel
    Authors: Rognoni, G., D’amore, G.K.O., Brocco, E., Moro, L., Biot, M.
    Year: 2023
    Citations: 1
  • Title: Acoustic black holes: The new frontier for soundproofing on board ships
    Authors: D’Amore, G.K.O., Rognoni, G., Biot, M., Mauro, F.
    Year: 2023
    Citations: 1
  • Title: A Preliminary Study of a Multifunctional DOC/Wet-Scrubber Capable to Reduce both Chemical and Acoustic Emissions in Marine Field
    Authors: Kyaw Oo D’Amore, G., Kašpar, J.
    Year: 2023
    Citations: 0
  • Title: A Numerical Method to Fit the Need of a Straightforward Characterization of Viscoelastic Materials for Marine Applications
    Authors: Rognoni, G., Kyaw Oo D’Amore, G., Brocco, E., Biot, M.
    Year: 2022
    Citations: 1
  • Title: A Combined CFD-FEM Approach to Evaluate Acoustic Performances of an Integrated Scrubber-Silencer for Marine Applications
    Authors: Kyaw Oo D’Amore, G., Mauro, F., Morgut, M., Rognoni, G., Biot, M.
    Year: 2022
    Citations: 1
  • Title: A Metamaterial Solution for Soundproofing on Board Ship
    Authors: Kyaw Oo D’Amore, G., Caverni, S., Biot, M., Rognoni, G., D’alessandro, L.
    Year: 2022
    Citations: 5