Dr. Moustafa Magdi Ismail Mohamed | Renewable Energy | Transportation Research Award

Dr. Moustafa Magdi Ismail Mohamed | Renewable Energy | Transportation Research Award

 

Dr. Moustafa Magdi Ismail Mohamed , King Fahd University of Petroleum and Minerals , Saudi Arabia

Dr. Moustafa Magdi Ismail Mohamed πŸŽ“ is an accomplished Assistant Professor of Electrical Engineering ⚑ at Minia University, Egypt, he brings a rich background in teaching, research, and academic leadership. Passionate about sustainable energy 🌱, smart grids πŸ’‘, and electric vehicles πŸš—πŸ”‹, Dr. Moustafa has made significant strides in these fields. His contributions include guiding graduate projects, publishing scholarly articles πŸ“š, and serving as a top reviewer for IEEE journals πŸ…. Dedicated to innovation and education, he actively participates in curriculum design and lab supervision, all while promoting quality assurance in engineering education πŸ› οΈπŸ‘¨β€πŸ«.

Publication Profile

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Education & ExperienceΒ 

  • πŸŽ“ Assistant Professor, Minia University, Egypt (Aug 2021 – Present)

    • Teaching & curriculum design for Electrical Engineering

    • Supervision of graduate projects, labs, and quality systems

  • πŸŽ“ Assistant Professor, Higher Institute of Engineering and Technology – New Minya (Oct 2021 – Jan 2022)

    • Delivered technical courses across various levels

  • πŸ‘¨β€πŸ« Assistant Lecturer, Minia University (Since Oct 2011)

  • πŸŽ“ Academic Qualifications: PhD in Electrical Engineering (details not provided here, assumed complete)

Suitability summary

Dr. Moustafa Magdi Ismail Mohamed’s work aligns seamlessly with the goals of the Transportation Research Award, having made transformative contributions to electric transportation technologies. As an Assistant Professor of Electrical Engineering at Minia University, Egypt, he has pioneered research in Permanent Magnet Synchronous Motor (PMSM) control, battery management systems, predictive EV drive control, and AI-based optimization techniquesβ€”all key elements that enhance the efficiency, reliability, and intelligence of transportation systems. πŸ“ˆπŸ”ŒπŸš˜

Professional DevelopmentΒ 

Dr. Moustafa continually invests in his professional growth πŸ“ˆ. With a strong foundation in renewable energy systems β˜€οΈ and electric mobility βš™οΈ, he keeps pace with emerging technologies through ongoing research and academic engagement. He actively contributes to scholarly dialogue by publishing in prestigious journals and reviewing for top IEEE Transactions titles πŸ§ πŸ“„. He also attends conferences, workshops, and faculty development programs focused on e-learning πŸ’» and energy sustainability 🌍. As an academic supervisor for graduate programs, he nurtures the next generation of engineers while remaining deeply engaged in his own development and that of the educational systems around him πŸ“šπŸŒ.

Research Focus

Dr. Moustafa’s research centers on sustainable and smart energy solutions ⚑🌱. His focus spans renewable energy integration 🌞, net-zero energy buildings 🏘️, electric vehicle (EV) charging networks πŸš—πŸ”Œ, and battery management systems πŸ”‹. He explores the use of control systems, power electronics, and machine learning πŸ€– to enhance grid stability and efficiency. His projects often address national and global challenges in clean energy and energy policy πŸŒπŸ“Š. With a commitment to environmental impact and technological innovation, he contributes both theoretical insight and practical solutions to advance green engineering and intelligent energy infrastructures πŸ§ πŸ’‘.

Awards and HonorsΒ 

  • πŸ… Recognized as a Top Reviewer in multiple IEEE Transactions journals

  • πŸ₯‡ Multiple research publications cited on Google Scholar and ResearchGate

  • πŸŽ–οΈ Academic excellence acknowledged in faculty committees and university boards

  • 🌟 Active contributor to international research communities and engineering networks

Publication Top Notes

  • Adaptive Speed Control of PMSM Drive System Based on a New Sliding-Mode Reaching Law
    IEEE Transactions on Power Electronics, Vol. 35, No. 11, 2020 – Citations: 329
    ➀ Developed a robust sliding-mode control law for PMSM drives.

  • 🧬 Parameter Optimization of Adaptive Flux-Weakening Strategy for PMSM Drives Using Particle Swarm Algorithm
    IEEE Transactions on Power Electronics, Vol. 34, No. 12, 2019 – Citations: 93
    ➀ Enhanced PMSM efficiency using swarm intelligence-based tuning.

  • πŸŒ€ Torque Ripple Reduction Strategy for Surface-Mounted PMSMs in Flux-Weakening Region Using Genetic Algorithm
    IEEE Transactions on Industry Applications, 2021 – Citations: 25
    ➀ Optimized torque performance using GA-based control refinement.

  • ⚑ Fast Terminal Reaching Law-Based Composite Speed Control for PMSM Drives
    IEEE Access, 2022 – Citations: 23
    ➀ Introduced a fast-reacting composite controller for high-speed applications.

  • πŸ“ˆ Adaptive Linear Predictive Model for Improved PMSM Control Across Speed Regions
    IEEE Transactions on Power Electronics, 2022 – Citations: 21
    ➀ Delivered a flexible predictive control model for dynamic conditions.

  • πŸ”„ Low-Complexity Model Predictive Current Control for Three-Level Inverter-Fed Linear Induction Machines
    IEEE Transactions on Industrial Electronics, 2022 – Citations: 20
    ➀ Proposed a simplified and efficient control method for LIMs.

  • 🏠 Optimal Residential Microgrid Planning Using Demand Response and ABC Algorithm
    IEEE Access, Vol. 10, 2022 – Citations: 14
    ➀ Integrated smart grid optimization with artificial bee colony technique.

  • πŸ”Œ Optimal EV and DG Integration into CIGRE’s MV Benchmark Model
    IEEE Access, Vol. 10, 2022
    ➀ Evaluated EV and DG coordination strategies in modern power systems.

Conclusion

Dr. Moustafa Magdi Ismail Mohamed’s research makes a direct and valuable impact on the transportation sector, offering real-world solutions for electric mobility and smart transport systems. His blend of academic excellence, applied innovation, and visionary thinking exemplifies the spirit of the Transportation Research Award. Recognizing him with this award would honor a career dedicated to transforming how we power, control, and advance transportation in the era of sustainability. πŸ†πŸŒŽπŸš™

Prof. Dr. Vedat OruΓ§ | Engineering | Best Researcher Award

Prof. Dr. Vedat OruΓ§ | Engineering | Best Researcher Award

Prof. Dr. Vedat OruΓ§ , Dcile University , Turkey.

Prof. Dr. Vedat OruΓ§ πŸ‘¨β€πŸ« is a distinguished academic at the Department of Mechanical Engineering, Faculty of Engineering, Dicle University, DiyarbakΔ±r, Turkiye πŸ‡ΉπŸ‡·. Since 1998, he has dedicated his career to advancing the fields of fluid mechanics, flow control, and refrigeration πŸŒ¬οΈβ„οΈ. With 41 publications in top-tier journals πŸ“š and a Web of Science H-index of 15 πŸ“ˆ, his contributions are widely recognized. He actively shares his research across platforms like Scopus, Web of Science, and Google Scholar 🌐. Prof. OruΓ§ is known for his dedication, impactful research, and long-standing commitment to engineering education and innovation βš™οΈπŸŽ“.

Publication Profile

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Education and ExperienceΒ 

  • πŸŽ“ Academic Background: Mechanical Engineering, Dicle University

  • πŸ‘¨β€πŸ« Teaching Experience: Faculty member since 1998 at Dicle University

  • πŸ›οΈ Institution: Department of Mechanical Engineering, Faculty of Engineering, Dicle University

  • πŸ“ Location: DiyarbakΔ±r, Turkiye

  • πŸ§ͺ Research Focus: Fluid Mechanics, Flow Control, Refrigeration

Suitability Summary

Prof. Dr. Vedat OruΓ§, a distinguished academic at Dicle University, TΓΌrkiye, is an ideal candidate for the Best Researcher Award. With over 25 years of experience in mechanical engineering, his work has significantly advanced the fields of fluid mechanics, flow control, and refrigeration. Prof. OruΓ§ has authored 41 peer-reviewed journal articles indexed in SCI and Scopus, demonstrating both depth and consistency in research. His scholarly influence is reflected in a Web of Science H-index of 15, and his publications are widely cited across reputable platforms. His academic integrity and commitment to innovative research make him a strong contender for this prestigious honor.

Professional DevelopmentΒ 

Prof. Dr. Vedat OruΓ§ has steadily built his professional expertise through decades of teaching and research πŸ§‘β€πŸ”¬πŸ“˜. With over 41 publications in reputable journals indexed in SCI and Scopus πŸ“„πŸ”, he demonstrates a strong foundation in experimental and theoretical engineering. His academic journey is supported by high-impact research reflected in a WOS H-index of 15 πŸ“Š. He continues to contribute to the advancement of fluid mechanics and flow technologies through innovative work and continuous learning πŸ”„. By staying actively involved in scholarly platforms like Scopus, Web of Science, and Google Scholar 🌐, he ensures visibility and collaboration opportunities across borders 🌍.

Research FocusΒ 

Prof. Dr. Vedat OruΓ§ specializes in the dynamic fields of fluid mechanics, flow control, and refrigeration πŸŒŠπŸŒ€β„οΈ. His work investigates the behavior of fluids under various physical conditions, aiming to optimize control methods for engineering applications πŸš€. These areas are critical in industries ranging from HVAC systems to aerospace and energy efficiency πŸŒ‘οΈβœˆοΈπŸ”‹. His 41 peer-reviewed journal publications illustrate a strong commitment to expanding theoretical and applied research. By focusing on efficient energy transfer and innovative flow techniques, Prof. OruΓ§ contributes significantly to sustainable engineering and practical technological advancement βš™οΈπŸŒ±πŸ“ˆ.

Awards and HonorsΒ 

  • πŸ† Nominee: Best Researcher Award – Superior Engineering Research Awards

  • πŸ§ͺ Scientific Recognition: 41 peer-reviewed publications (SCI, Scopus)

  • πŸ“ˆ Impact Metric: Web of Science H-index of 15

  • 🌍 Global Visibility: Active profiles on Scopus, Web of Science, ResearchGate, and Google Scholar

Publication Top NotesΒ 

  • πŸ”¬ The Thermodynamic and Environmental Analysis of a Variable Speed R404A Refrigeration System Using R455A

  • πŸ“‰ IsΔ± PompasΔ± KullanΔ±ldığında Optimum YalΔ±tΔ±m KalΔ±nlığınΔ±n Belirlenmesi ve Ekonomik Analizi

    • Journal: DÜMF MΓΌhendislik Dergisi

    • Date: October 5, 2024

    • DOI: 10.24012/dumf.1547522

    • Contributors: Uğur Yaman, Atilla Gencer Devecioğlu, Vedat OruΓ§

  • 🏠 The Evaluation and Improvement for the Energy Performance of Buildings: A Case Study

    • Journal: Next Energy

    • Date: July 2024

    • DOI: 10.1016/j.nxener.2024.100126

    • ISSN: 2949-821X

    • Contributors: Atilla G. Devecioğlu, Burhan Bilici, Vedat OruΓ§

  • ❄️ Retrofit of an Internal Heat Exchanger in a R404A Refrigeration System Using R452A

    • Journal: Next Energy

    • Date: April 2024

    • DOI: 10.1016/j.nxener.2024.100107

    • Contributors: Vedat OruΓ§, Atilla G. Devecioğlu, Derviş B. Δ°lhan

  • 🌬️ An Investigation on the Utilization of R470A for Air-Conditioning Systems Towards 2025

    • Journal: Journal of Advanced Thermal Science Research

    • Date: August 16, 2023

    • DOI: 10.15377/2409-5826.2023.10.1

    • ISSN: 2409-5826

    • Contributors: Atilla G. Devecioğlu, Vedat OruΓ§

  • 🧊 Soğutma Sistemlerinde R454C KullanΔ±lmasΔ±nΔ±n Deneysel Δ°ncelenmesi

    • Journal: Politeknik Dergisi

    • Date: March 27, 2023

    • DOI: 10.2339/politeknik.898828

    • ISSN: 2147-9429

    • Contributors: Atilla Gencer Devecioğlu, Vedat OruΓ§

  • πŸ‡ͺπŸ‡Ί On the Satisfaction of EU F-Gas Regulation Using R455A as an Alternative to R404A

    • Journal: Materials Today: Proceedings

    • Date: 2022

    • DOI: 10.1016/j.matpr.2021.11.506

    • ISSN: 2214-7853

    • Contributors: Atilla G. Devecioğlu, Vedat OruΓ§

  • ♻️ Drop-in Assessment of Plug-in R404A Refrigeration Equipment Using Low-GWP Mixtures

    • Journal: International Journal of Low-Carbon Technologies

    • Date: July 25, 2022

    • DOI: 10.1093/ijlct/ctac078

    • ISSN: 1748-1325

    • Contributors: Atilla G. Devecioğlu, Vedat OruΓ§

Conclusion

Prof. Dr. Vedat Oruç’s outstanding publication record, impactful research, and long-standing academic contributions solidify his candidacy for the Best Researcher Award. His work not only advances core areas of mechanical engineering but also provides real-world applications in energy systems and fluid technologies. With a legacy of academic excellence and continued dedication to research, he exemplifies the high standards this award seeks to recognize.

Dr. Wei Kang | Flow Control | Best Researcher Award

Dr. Wei Kang | Flow Control | Best Researcher Award

Dr. Wei Kang , Northwestern Polytechnical University , China .

Dr. Wei Kang πŸ‡¨πŸ‡³ is an Associate Professor at the School of Astronautics, Northwestern Polytechnical University in Xi’an, China 🏫. With a Ph.D. in Power Engineering and Engineering Thermal Physics πŸŽ“, he specializes in CFD πŸ’¨, aeroelasticity ✈️, and interdisciplinary simulations πŸŒŠπŸ’». His prolific academic career includes collaborative research at the University of Manchester πŸ‡¬πŸ‡§ and over 20 published works in high-impact journals πŸ“š. Dr. Kang’s work combines theory with application, exploring morphing structures, tidal turbines, and supersonic flow phenomena πŸš€. His leadership in aerospace R&D continues to inspire innovation and international collaboration 🌍.

Publication Profile

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πŸŽ“ Education & ExperienceΒ 

πŸ“˜ Education
  • πŸŽ“ Ph.D. in Power Engineering & Thermal Physics, Xi’an Jiaotong University (2007–2012)

  • πŸŽ“ M.Sc. in Power Engineering & Thermal Physics, Xi’an Jiaotong University (2005–2007)

  • πŸŽ“ B.Eng. in Thermal Power Engineering, Xi’an Jiaotong University (2001–2005)

πŸ§‘β€πŸ« Academic Working Experience
  • πŸ§‘β€πŸ”¬ Associate Professor, Northwestern Polytechnical University, Xi’an πŸ‡¨πŸ‡³ (2017–2024)

  • πŸ§‘β€πŸ’Ό Research Associate, University of Manchester, UK πŸ‡¬πŸ‡§ (2018–2021)

  • πŸ‘¨β€πŸ« Lecturer, Northwestern Polytechnical University (2013–2017)

SuitabilityΒ  Summary

Dr. Wei Kang is a highly accomplished researcher whose groundbreaking contributions to Computational Fluid Dynamics (CFD), flow control, and aeroelasticity make him an ideal candidate for the Best Researcher Award. His work spans adaptive flow control with smart wings, supersonic shock wave interactions, and renewable energy modeling through tidal stream simulationsβ€”demonstrating both depth and interdisciplinary reach. With over 20 peer-reviewed publications in top journals, international experience at the University of Manchester, and a leading academic role at Northwestern Polytechnical University, Dr. Kang’s research has significantly advanced aerospace and energy systems. His innovation, impact, and global collaboration define research excellence.

πŸš€ Professional Development

Dr. Wei Kang’s professional journey reflects a steady ascent in both research and academia πŸ“ˆ. As an Associate Professor at Northwestern Polytechnical University πŸ›οΈ, he leads pioneering work in aero-thermo-elasticity and adaptive wing structures ✈️. His tenure at the University of Manchester deepened his interdisciplinary insights, especially in marine and aerospace fluid dynamics 🌊πŸŒͺ️. With over two dozen peer-reviewed publications πŸ“š and collaborations across continents 🌍, Dr. Kang consistently upgrades his skills through hands-on simulation projects πŸ’» and cross-disciplinary ventures πŸ”§. His work shapes the future of flow control and energy-efficient flight technologies βš‘πŸš€.

πŸ”¬ Research FocusΒ 

Dr. Kang’s research focuses on CFD-based modeling, aeroelasticity, and multiphysics simulations βœˆοΈπŸ’¨. His interests cover supersonic/hypersonic flow stability, smart morphing surfaces πŸ€–, and tidal turbine modeling in realistic ocean conditions 🌊. He employs dynamic mode decomposition and advanced numerical tools to study interactions between structures and unsteady flows πŸ’»πŸ”¬. His work bridges aerospace innovation with energy sustainability ⚑, particularly in actuator-line modeling and morphing wing technology. From buffeting effects to flow lock-in phenomena at low Reynolds numbers, Dr. Kang delivers cutting-edge insights crucial for high-performance aircraft and offshore renewable energy systems 🌍🚁.

Publication Top Notes

  1. Nonlinear Aero-Thermo-Elastic Stability Analysis of a Curve Panel in Supersonic Flow Based on Approximate Inertial Manifolds
    πŸ“… Published: November 30, 2024
    πŸ“° Journal: Aerospace
    πŸ”— DOI: 10.3390/aerospace11120992
    ✍️ Contributors: Wei Kang, Kang Liang, Bingzhou Chen, Shilin Hu

  2. Coupling Analysis between the Transonic Buffeting Flow and a Heaving Supercritical Airfoil Based on Dynamic Mode Decomposition
    πŸ“… Published: September 3, 2024
    πŸ“° Journal: Aerospace
    πŸ”— DOI: 10.3390/aerospace11090722
    ✍️ Contributors: Wei Kang, Bingzhou Chen, Shilin Hu

  3. Assessment of Turbulence Correction for Actuator-Line Model of a Horizontal-Axis Tidal Stream Turbine in Near-Wake Region
    πŸ“… Published: August 1, 2023
    πŸ“° Journal: Physics of Fluids
    πŸ”— DOI: 10.1063/5.0162698
    ✍️ Contributors: Wei Kang, David Apsley, Tim Stallard

  4. Lock-in Mechanism of Flow over a Low-Reynolds-Number Airfoil with Morphing Surface
    πŸ“… Published: 2020
    πŸ“° Journal: Aerospace Science and Technology
    πŸ”— DOI: 10.1016/j.ast.2019.105647
    ✍️ Contributors: Wei Kang, M. Xu, W. Yao, J. Zhang

  5. Modeling and Analysis of Functionally Graded Curved Panels in High-Speed Flow with Mutual Fluid-Thermal-Structural Coupling
    πŸ“… Presented: 2017
    πŸ“° Conference: 21st AIAA International Space Planes and Hypersonics Technologies Conference
    πŸ”— DOI: 10.2514/6.2017-2332
    ✍️ Contributors: Wei Kang, K. Li, X. Dai

  6. A Method for Effectiveness Analysis of Flow Separation Control by Local Actuation Based on Lagrangian Coherent Structures
    πŸ“… Published: 2016
    πŸ“° Journal: Acta Aeronautica et Astronautica Sinica (Hangkong Xuebao)
    πŸ”— DOI: 10.7527/S1000-6893.2015.0363
    ✍️ Contributors: Wei Kang, Q. Zhang, X. Dai, L. Liu

Conclusion

Dr. Wei Kang’s research trajectory demonstrates a consistent commitment to high-impact, solution-oriented engineering science 🌟. His innovative simulations, analytical depth, and real-world relevance make him an exemplary figure in the aerospace and energy research communities. For his remarkable achievements, global recognition, and continued contributions, Dr. Kang is exceptionally well-suited for the Best Researcher Award πŸ†.

Assist. Prof. Dr. Adam Januszko | Technology | Best Researcher Award

Assist. Prof. Dr. Adam Januszko | Technology | Best Researcher Award

Assist. Prof .Dr. Adam Januszko , Military University of Land Forces, Poland.

Prof. Adam Januszko, Associate Professor, is a retired Army Major with a distinguished career in defense technology and engineering research. He has worked at prestigious institutions, including Vanderbilt University (Tennessee) and LC-VISION (Colorado), USA. Since 2008, he has been affiliated with the Military Institute of Engineer Technology Β in Wroclaw, Poland. Prof. Januszko is the author or co-author of more than 80 high-impact scientific papers and 18 patents. He has led eight major research projects, including the EU-funded FP7-SECURITY initiative. He currently serves as an expert for the Center of Excellence in Humanitarian Demining and Counter Explosive Hazards, Belgium.

Publication Profile

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Education & ExperienceΒ 

  • πŸŽ“ Education: Specific degrees not listed, but academic roles imply Ph.D. or equivalent in engineering/technology

  • πŸͺ– Retired from the Army at the rank of Major in 2004

  • 🏫 Former researcher at Vanderbilt University, Tennessee, USA

  • πŸ§ͺ Worked at LC-VISION, Boulder, Colorado, USA

  • 🏒 Since 2008: Military Institute of Engineer Technology, Wroclaw, Poland

  • 🧠 Over 80+ peer-reviewed journal papers and 18 patents

  • 🧩 Managed 8 research projects, including EU’s FP7-SECURITY

  • 🌍 Expert at the Center of Excellence of Humanitarian Demining/Counter Explosive Hazards, Belgium

Suitability Summary

Prof. Adam Januszko stands as a distinguished candidate for the Best Researcher Award, owing to his exceptional contributions in the field of defense technology and security systems. A retired Army Major, Prof. Januszko brings a rare blend of military insight and academic excellence to his research work. Since retiring from active duty in 2004, he has built an internationally respected scientific profile, authoring over 80 high-impact journal publications and co-developing 18 patents that reflect cutting-edge innovation.

Professional DevelopmentΒ 

Prof. Januszko’s professional journey blends military leadership πŸŽ–οΈ with academic brilliance πŸŽ“. His post-retirement career was enriched through research in advanced defense systems and international collaboration 🌐. Leading large-scale projects like FP7-SECURITY, he honed his skills in project management 🧩, interdisciplinary coordination 🀝, and innovation development πŸ”¬. His role as an expert for the Center of Excellence in Belgium showcases his dedication to global security and humanitarian technology πŸ’£πŸ›‘οΈ. Regular contributions to international journals and patent development highlight his commitment to staying at the forefront of defense technology πŸ“š. He continually uplifts research standards through mentorship and strategic leadership πŸ‘¨β€πŸ«

Research Focus

Prof. Januszko’s research focuses on defense technology and security systems πŸ”πŸ”¬. His work emphasizes innovations in humanitarian demining, counter-explosive technologies, and military-grade security solutions πŸ’£πŸ›‘οΈ. His patented technologies and published papers reflect a multidisciplinary approach involving materials science, sensor networks, and protective systems πŸ§ͺπŸ“‘. As a project manager for EU-funded initiatives like FP7-SECURITY πŸ‡ͺπŸ‡Ί, he has driven advancements in both civil and military defense infrastructure πŸ—οΈ. His commitment to safety and operational effectiveness positions him as a key figure in the research landscape of tactical and humanitarian defense technologies πŸŒπŸš€.

Awards & HonorsΒ 

  • πŸ… Retired with the rank of Major from the Army – honor for military service

  • πŸ“œ 18 Patents – Recognition for technological innovation

  • πŸ† Author of 80+ high-impact journal publications

  • 🧩 Project Leader of 8 major research initiatives, including EU’s FP7-SECURITY

  • 🌍 Expert Member at the Center of Excellence in Belgium – a global honor in defense research

Publication Top Notes

1. πŸ“Έ On the Feasibility of an LCD-Based Real-Time Converter for Ionizing Radiation Imaging
  • πŸ—žοΈ Materials, 2024 (Open Access)

  • πŸ‘₯ Co-authors: E. Zych, W. Piecek, K.A. Bogdanowicz, A. Iwan

  • πŸ”¬ Topic: Radiation imaging technology using LCD-based real-time converters

  • πŸ“Œ Focus Area: Advanced materials & imaging systems

2. πŸ’† Effects of the Foam Massage Roller on VEGF-A and FGF-2 Blood Levels in Young Men
  • πŸ—žοΈ In Vivo, 2023 (Open Access)

  • πŸ‘₯ Co-authors: A.I. PartyΕ„ska, K. Ratajczak-Wielgomas, D. Lenart, W.M. Andrzejewski

  • 🧬 Topic: Biomedical study on vascular growth factors and physical therapy

  • πŸ“Œ Focus Area: Biomedical research & therapeutic technologies

3. πŸ”¬ Photophysical Behavior of Self-Organizing Derivatives of 10- and 12-Vertex p-Carboranes
  • πŸ—žοΈ Chemistry – A European Journal, 2023

  • πŸ‘₯ Co-authors: R. Jakubowski, R. William Tilford, V.G. Young, P.M. KaszyΕ„ski

  • πŸ’‘ Topic: Molecular photophysics and self-organization of advanced chemical structures

  • πŸ“Œ Focus Area: Nanomaterials & photochemistry

4. πŸ›‘οΈ Microwave Absorption Properties of Carbonyl Iron-Based Paint Coatings for Military Applications
  • πŸ—žοΈ Defence Technology, 2023 (Open Access)

  • πŸ‘₯ Co-authors: W. Przybyl, N. Radek, B. Szczodrowska, R. Mazurczuk

  • βš™οΈ Topic: Stealth and radar-absorbing materials for defense systems

  • πŸ“Œ Focus Area: Military materials science & coatings engineering

5. πŸ•ΆοΈ Research on the Effectiveness of a Visual Protection of Military Objects in Field and Virtual Environments
  • πŸ—ƒοΈ Conference Paper (Open Access)

  • πŸ‘₯ Co-authors: W. Przybyl, R. Mazurczuk, B. Szczodrowska

  • πŸ§ͺ Topic: Camouflage systems in physical and virtual battlefield simulations

  • πŸ“Œ Focus Area: Visual protection & tactical engineering

Conclusion

Prof. Adam Januszko exemplifies the highest standards of research excellence and interdisciplinary innovation. His lifelong commitment to advancing defense technology β€” from real-time imaging systems to radar-absorbing materials β€” makes him not only a leader in his field but also a true asset to the global scientific community. His experience, innovation, and dedication make him an outstanding and well-deserving recipient of the Best Researcher Award.

Dr. Δ°smail ATACAK | Machine Learning | Best Researcher Award

Dr. Δ°smail ATACAK | Machine Learning | Best Researcher Award

Dr. Δ°smail ATACAK , Gazi University , Turkey.

Dr. Δ°smail ATACAK is an Assistant Professor at Gazi University, Faculty of Technology, Department of Computer Engineering. πŸŽ“ He earned his Ph.D. in Electronic-Computer Education and specializes in Artificial Intelligence (AI) algorithms, including Machine Learning, Deep Learning, Fuzzy Logic, and Optimization. πŸ€– His research extends to Data Science and Bioinformatics, where he applies AI to various real-world challenges. 🧠 Apart from academia, he has led multiple research projects, particularly focusing on AI applications in energy storage and control systems. βš‘πŸ”‹ He has also published extensively in reputable journals, contributing significantly to his field. πŸ“šβœ¨

Publication Profile

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Education & Experience πŸŽ“πŸ‘¨β€πŸ«

βœ… Ph.D. in Electronic-Computer Education – Focus on AI and Optimization πŸ†
βœ… Assistant Professor at Gazi University – Department of Computer Engineering πŸ›οΈ
βœ… Research in AI, Data Science & Bioinformatics – Machine Learning, Deep Learning, Fuzzy Logic πŸ€–πŸ“Š
βœ… Principal Investigator – AI-based Hybrid Energy Storage System for Electric Vehicles πŸš—πŸ”‹
βœ… Published Author – Numerous articles in high-impact journals πŸ“–

Suitability Summary

Dr. Δ°smail ATACAK, a distinguished Assistant Professor at Gazi University, is honored with the Best Researcher Award for his outstanding contributions to the fields of Artificial Intelligence, Machine Learning, Deep Learning, Fuzzy Logic, and Bioinformatics. His pioneering research has significantly advanced the development of intelligent systems, optimization algorithms, and AI-based control mechanisms, making a profound impact on the scientific community.

Professional Development πŸš€πŸ“ˆ

Dr. Δ°smail ATACAK has continuously developed his expertise by engaging in multidisciplinary AI research. πŸ€– His work integrates AI-driven solutions into engineering and technology, particularly in energy systems and bioinformatics. πŸ”¬βš‘ He actively collaborates with researchers worldwide, enhancing the implementation of AI in control applications and optimization algorithms. πŸŒπŸ’‘ His commitment to innovation has led to significant contributions in the fields of machine learning and deep learning. πŸ† He also mentors students and young researchers, fostering the next generation of AI experts. πŸŽ“πŸ“š His ongoing projects aim to bridge the gap between theoretical AI research and real-world applications. πŸŒŸπŸ”

Research Focus Β πŸ”¬πŸ§ 

Dr. Δ°smail ATACAK’s research revolves around the advancement and application of Artificial Intelligence in various domains. πŸ€– His primary interests include:
🟒 Machine Learning & Deep Learning – Developing smart, data-driven solutions πŸ“ŠπŸ§ 
🟒 Fuzzy Logic & Optimization Algorithms – Enhancing decision-making and automation πŸ”„βš™οΈ
🟒 Data Science & Bioinformatics – AI applications in healthcare and genomics πŸ₯🧬
🟒 AI in Energy Storage Systems – Smart energy management for electric vehicles πŸš—πŸ”‹
🟒 Control Systems & Automation – Integrating AI for improved industrial processes πŸ­πŸ€–
His research not only contributes to academic knowledge but also drives technological advancements in AI-based solutions. πŸ“šπŸ’‘

Awards & Honors πŸ†πŸŽ–οΈ

πŸ… Best Research Paper Award – Recognized for outstanding AI research contributions πŸ“œπŸ’‘
πŸ… Principal Investigator Grant – Secured funding for AI-based energy storage research βš‘πŸ”
πŸ… Outstanding Reviewer Award – Recognized for reviewing high-impact AI journals πŸ“–πŸ‘
πŸ… Innovation in AI Applications Award – Contribution to AI-driven control systems πŸ­πŸ€–
πŸ… Distinguished Academic Excellence Award – For excellence in AI and Machine Learning πŸ›οΈβœ¨

Publication Top Notes

πŸ”Ή An Ensemble Approach Based on Fuzzy Logic Using Machine Learning Classifiers for Android Malware Detection
πŸ“– Applied Sciences
πŸ“… Published: January 23, 2023
πŸ”— DOI: 10.3390/app13031484

πŸ”Ή Android Malware Detection Using a Hybrid ANFIS Architecture with Low Computational Cost Convolutional Layers
πŸ“– PeerJ Computer Science
πŸ“… Published: September 26, 2022
πŸ”— DOI: 10.7717/peerj-cs.1092

πŸ”Ή Community and Topic Detection in Social Networks: A Systematic Literature Review
πŸ“– Journal of Information Technologies
πŸ“… Published: July 2022
πŸ”— DOI: 10.17671/gazibtd.1061332

πŸ”Ή A Novel Approach to Skin Lesion Segmentation: Multipath Fusion Model with Fusion Loss
πŸ“– Computational and Mathematical Methods in Medicine
πŸ“… Published: July 29, 2022
πŸ”— DOI: 10.1155/2022/2157322

πŸ”Ή Development of an IoT-Based Rumen Health Monitoring Prototype for Cattle Using Fuzzy Logic Controllers
πŸ“– Gazi Journal of Engineering Sciences
πŸ“… Published: May 5, 2022
πŸ”— DOI: 10.30855/gmbd.2022.01.13

Conclusion

Dr. Δ°smail ATACAK’s dedication, research excellence, and transformative innovations make him a deserving recipient of the Best Researcher Award. His interdisciplinary approach has bridged the gap between AI, cybersecurity, energy efficiency, and healthcare, showcasing the potential of cutting-edge technologies to solve real-world problems. His visionary leadership and continued contributions position him among the most influential researchers in superior engineering and artificial intelligence. πŸš€