Hemantkumar Kadam | Heat Transfer | Best Researcher Award

Mr. Hemantkumar Kadam | Heat Transfer | Best Researcher Award

Pimpri Chinchwad College of Engineering | India

Mr. Hemantkumar Kadam, Assistant Professor at Pimpri Chinchwad College of Engineering, Pune, is a dedicated researcher in mechanical engineering, pursuing a Ph.D. at Shivaji University, Kolhapur, with a focus on nanofluids, surfactants, stability, and heat transfer enhancement. With an M.Tech in Thermal Engineering and a B.E. in Mechanical Engineering, he has conducted extensive experimental studies on alumina nanofluids stabilized with biosurfactants (Rhamnolipids) and synthetic surfactants (SDS, SLS, PVP), analyzing thermophysical properties such as viscosity, interfacial tension, and stability using advanced techniques like UV-Vis spectroscopy, DLS, and zeta potential. His research demonstrates the comparative environmental and performance advantages of biosurfactants over synthetic surfactants, offering sustainable approaches for heat transfer enhancement in renewable energy, HVAC, and electronic cooling systems. Mr. Hemantkumar Kadam has published four high-quality papers in SCIE and ESCI journals, holds two granted copyrights, and has a patent under process. He is an active member of ISTE and maintains professional profiles across Google Scholar, ORCID, ResearchGate, Web of Science, and Scopus. Although his h-index is currently 1 with four citations, his work reflects innovative experimental research, strong academic contributions, and promising potential to impact sustainable thermal management technologies, making him a suitable candidate for the Best Research Award.

Featured Publications

Nikhade, H. V., Rohokale, O. R., Kalyankar, A. R., Deodikar, A. A., & Deoghare, S. U. (2022). Electronic differential using the concept of torque vectoring. In Proceedings of the 6th International Conference on Computing, Communication, Control and Automation (ICCUBEA 2022). IEEE.

Kadam, H. H., & Pise, A. T. (2025). A thorough analysis of surfactant addition effects on the thermophysical properties and stability of nanofluids. Journal of Surfactants and Detergents, 28(4), 775–812.

Kadam, H. H., Pise, A. T., & Sali, A. V. (2025). Experimental study: The impact of surfactant and nanoparticles concentration on the stability of alumina nanofluids. Journal of Dispersion Science and Technology, 1–15.

Kadam, H. H., & Pise, A. T. (2025). An experimental investigation on the determination of critical micelle concentration (CMC) of various surfactants using the surface tension method. Journal of Polymer and Composites, 13(5).

Kadam, H. H., & Pise, A. T. (2025). Influence of rhamnolipids, anionic surfactants, and Al2O3 nanoparticles on the viscosity of distilled water-based fluids: A comparative experimental study. Journal of Surfactants and Detergents.

Yuh-Ming Ferng | Engineering | Best Researcher Award

Prof. Yuh-Ming Ferng | Engineering | Best Researcher Award

National Tsing Hua University | Taiwan

Prof. Yuh-Ming Ferng, a distinguished Professor at the Department of Engineering and System Science, Institute of Nuclear Engineering and Science, National Tsing Hua University (NTHU), has made significant contributions to nuclear engineering through his extensive research and academic leadership. He earned his B.S. and Ph.D. in Nuclear Engineering from NTHU, where his doctoral thesis focused on the numerical simulation of the rewetting process. With a professional career spanning over three decades, Prof. Yuh-Ming Ferng has held roles as Assistant, Associate, and Full Professor at NTHU, alongside senior research positions at its Nuclear Science and Technology Development Center and the Center for Energy and Environmental Research, as well as the Institute of Nuclear Energy Research. His research expertise covers nuclear reactor safety, severe accident analysis, CFD turbulence modeling, two-phase flow, thermal management, fuel cell simulation, and renewable energy systems. With 2,470 citations, 168 documents, and an h-index of 30, he is a highly impactful researcher in his field.

Profile: Scopus

Featured Publications

  • Ferng, Y.-M., & co-authors. (2026). Determining minimum site area for deep geological repository of spent fuels using thermal simulations. Annals of Nuclear Energy. Advance online publication.

  • Ferng, Y.-M., & co-authors. (2025). Thermal management design for the Be target of an accelerator-based boron neutron capture therapy system using numerical simulations with boiling heat transfer models. Processes. Advance online publication.

  • Ferng, Y.-M., & co-authors. (2024). Development of thermal-hydraulic coupling model for deep-geological disposal of high-level radioactive wastes. Nuclear Engineering and Design.

  • Ferng, Y.-M., & co-authors. (2024). Numerical model for noise reduction of small vertical-axis wind turbines. Wind Energy Science.

  • Ferng, Y.-M., & co-authors. (2024). Numerical prediction of the aerodynamics and aeroacoustics of a 25 kW horizontal axis wind turbine. Journal of Mechanics.

Xun Zhang | Engineering | Best Researcher Award

Mr. Xun Zhang | Engineering | Best Researcher Award

ISEP | France

Mr. Xun Zhang is a distinguished scholar specializing in embedded systems and wireless communication, currently serving as Professor at ISEP and permanent researcher at Saclay-Versailles University. He earned his MSc from Sorbonne University in 2005, PhD in Electrical Engineering from the University of Lorraine in 2009, and completed his Thesis Habilitation in Optical Wireless Communication at Sorbonne University in 2021. His career includes appointments as visiting professor at Tsinghua University, China, and De Vic University, Spain, along with postdoctoral research at CentralesupΓ©lec, Rennes. A senior member of IEEE, he has contributed extensively to the academic community as Associate Editor of IEEE Transactions on Broadcasting, Guest Editor for MDPI Sensors, Editor-in-Chief of the International Journal of Internet of Things, and organizer of major IEEE conferences including BMSB and ISCAS. He has supervised numerous postdoctoral researchers and PhD students on cutting-edge topics such as visible light communication, 6G IoT networks, indoor localization, and AI-driven optical systems. Recognized with awards including the Vivatech Innovation Award and supported by a French government PhD scholarship, his research continues to shape the future of IoT, 5G/6G, and optical communication technologies.

Profile: Google Scholar

Featured Publications

Ding, W., Yang, F., Yang, H., Wang, J., Wang, X., Zhang, X., & Song, J. (2015). A hybrid power line and visible light communication system for indoor hospital applications. Computers in Industry, 68, 170–178.

Song, J., Ding, W., Yang, F., Yang, H., Wang, J., Wang, X., & Zhang, X. (2014). Indoor hospital communication systems: An integrated solution based on power line and visible light communication. In 2014 IEEE Faible Tension Faible Consommation (FTFC) (pp. 1–6). IEEE.

Shi, L., Shi, D., Zhang, X., Meunier, B., Zhang, H., Wang, Z., Vladimirescu, A., Li, W., … (2020). 5G Internet of radio light positioning system for indoor broadcasting service. IEEE Transactions on Broadcasting, 66(2), 534–544.

Kaloxylos, A., Gavras, A., Camps Mur, D., Ghoraishi, M., & Hrasnica, H. (2021). AI and ML–Enablers for beyond 5G networks. IEEE Communications Standards Magazine, 5(2), 12–18.

Malik, B., & Zhang, X. (2015). Solar panel receiver system implementation for visible light communication. In 2015 IEEE International Conference on Electronics, Circuits, and Systems (ICECS) (pp. 249–252). IEEE.

Shin-Li Lu | Industrial Engineering | Best Researcher Award

Prof. Shin-Li Lu | Industrial Engineering | Best Researcher Award

Prof. Shin-Li Lu | Chung Yuan Christian University | Taiwan

Prof. Shin-Li Lu is a distinguished Professor in the Department of Industrial and Systems Engineering and serves as Chairman of the Undergraduate Program at the College of Electrical Engineering and Computer Science, Chung Yuan Christian University. With extensive expertise in statistical process control, quality and production management, business intelligence, and big data analytics, Prof. Shin-Li Lu has made significant contributions to both academia and industry. He has held leadership roles including Dean of Management and Information and Chairman of Industrial Management and Enterprise Information, and has previously served as Professor and Associate Professor at Aletheia University. His prolific research includes numerous high-impact publications in SCI and EI-indexed journals on topics such as EWMA, GWMA control charts, economic-statistical design, and forecasting methods for manufacturing and energy systems. Prof. Shin-Li Lu has presented widely at international conferences, led multiple MOST-funded research projects, and contributes as an editor and reviewer for prominent journals, advancing sustainable industrial engineering, quality management, and statistical process monitoring.

Profile:Β Google Scholar

Featured Publications

Lu, S. L. (2015). An extended nonparametric exponentially weighted moving average sign control chart. Quality and Reliability Engineering International, 31(1), 3–13. [Cited by 84]

Lu, S. L. (2019). Integrating heuristic time series with modified grey forecasting for renewable energy in Taiwan. Renewable Energy, 133, 1436–1444. [Cited by 56]

Lu, S. L. (2018). Nonparametric double generally weighted moving average sign charts based on process proportion. Communications in Statistics – Theory and Methods, 47(11), 2684–2700. [Cited by 27]

Sheu, S. H., & Lu, S. L. (2009). Monitoring the mean of autocorrelated observations with one generally weighted moving average control chart. Journal of Statistical Computation and Simulation, 79(12), 1393–1406. [Cited by 26]

Huang, C. J., Tai, S. H., & Lu, S. L. (2014). Measuring the performance improvement of a double generally weighted moving average control chart. Expert Systems with Applications, 41(7), 3313–3322. [Cited by 24]

Hongyan Tian | Mechanical Engineering | Best Researcher Award

Assoc. Prof. Dr. Hongyan Tian | Mechanical Engineering | Best Researcher Award

Assoc. Prof. Dr. Hongyan Tian | Hebei University of Technology | China

Assoc. Prof. Dr. Hongyan Tian is an accomplished researcher and academic at the School of Mechanical Engineering, Hebei University of Technology, China. She earned her Ph.D. from Lanzhou University and has built a distinguished career specializing in aerodynamic design and optimization of turbomachinery, aerodynamic performance analysis of wind turbines, and multi-scale coupling theory and applications. Since joining Hebei University of Technology, she has contributed significantly to advancing engineering science, first as a lecturer and currently as an associate professor. Her research is supported by prestigious funding bodies such as the National Natural Science Foundation of China, Hebei Natural Science Foundation, and key laboratory projects under the Ministry of Education. With more than thirty peer-reviewed publications in leading international and domestic journals, she has made notable contributions to wind turbine efficiency, turbomachinery optimization, and advanced material applications. Dr. Tian continues to pursue cutting-edge research that strengthens innovation in mechanical engineering.

Publication Profile

Scopus

Education and Professional Experience

Assoc. Prof. Dr. Hongyan Tian received her Ph.D. degree from Lanzhou University, where she developed a strong academic foundation in engineering research. Following her doctoral studies, she joined the School of Mechanical Engineering at Hebei University of Technology, where she began her career as a lecturer. During her tenure as a lecturer, she dedicated herself to teaching, mentoring students, and developing research expertise in aerodynamic design, wind turbine performance, and multi-scale coupling theory. Her commitment to academic excellence and impactful research led to her promotion as an Associate Professor at the same institution, a position she currently holds. In this role, Dr. Tian continues to advance her scholarly contributions through innovative projects, collaborations, and publications in leading journals. Her academic journey reflects consistent growth and a deep dedication to mechanical engineering, positioning her as a respected educator and researcher with significant contributions to both teaching and scientific innovation.

Research Focus

Assoc. Prof. Dr. Hongyan Tian’s research focus lies in the broad domain of mechanical and aerospace engineering with a strong emphasis on aerodynamics, turbomachinery, and renewable energy systems. Her work integrates aerodynamic design, optimization techniques, and structural considerations to improve the performance and efficiency of airfoils, wind turbines, and centrifugal compressors. She explores advanced methodologies such as deep reinforcement learning and numerical simulation to address challenges in flow control, stability, and energy efficiency. In addition to turbomachinery and wind turbine aerodynamics, her research extends to multiscale coupling theory, metamaterials, and phononic crystals, offering innovative solutions for vibration suppression and energy applications. By combining computational modeling with experimental analysis, her studies contribute to advancements in both theoretical understanding and practical engineering design. Positioned at the intersection of mechanical design, renewable energy, and computational fluid dynamics, her research plays a vital role in advancing sustainable energy technologies and high-performance engineering systems.

Publication Top Notes

Deep reinforcement learning control strategy for synthetic jets on airfoils
Year: 2025

Conclusion

Assoc. Prof. Dr. Hongyan Tian is a highly qualified candidate for the Best Researcher Award, with a solid academic background, impactful publications, and contributions to critical engineering challenges. With further global engagement and wider interdisciplinary collaborations, she has strong potential to become a leading figure in her field and a deserving award recipient.

Jungsoo Nam | Engineering | Best Researcher Award

Dr. Jungsoo Nam | Engineering | Best Researcher Award

Dr. Jungsoo Nam | Korea Institute of Industrial Technology | South Korea

Dr. Jungsoo Nam is a distinguished researcher in mechanical engineering, specializing in advanced manufacturing, precision machining, and nanotechnology applications. He earned his Ph.D. in Mechanical Engineering from Sungkyunkwan University, focusing on micro-drilling processes using nanofluids, after completing his undergraduate studies in Mechanical System and Design Engineering at Seoul National University of Science and Technology. Currently serving as Principal Researcher at the Korea Institute of Industrial Technology (KITECH), he has led pioneering projects in hybrid 3D printing, cryogenic machining, additive manufacturing, and carbon fiber reinforced plastics machining. His international research exposure includes a tenure as a Research Scholar at Purdue University, where he contributed to innovative developments in atomization-based spray coating and sensor fusion systems. Recognized with numerous prestigious honors such as the Young Researcher Award at PRESM, KITECH Best Researcher Award, and multiple best paper awards from leading engineering societies, Dr. NamDr. Jungsoo Nam has established himself as a leader in precision engineering and smart manufacturing technologies.

Publication Profile

Scopus

Google Scholar

Educational Background

Dr. Jungsoo Nam pursued his academic journey in the field of mechanical engineering with a strong focus on advanced manufacturing processes and nanotechnology applications. He earned his Bachelor of Science in Mechanical System and Design Engineering from Seoul National University of Science and Technology in Seoul, Korea, where he laid the foundation for his expertise in precision engineering and system design. Building on this foundation, he advanced to graduate studies at Sungkyunkwan University in Suwon, Korea, where he successfully completed his doctoral degree in Mechanical Engineering. Under the mentorship of Dr. Sang Won Lee, his doctoral dissertation was titled β€œA Study on Characterization and Monitoring for Micro-Drilling Process Using Nanofluids,” reflecting his early commitment to pioneering research in machining processes and process monitoring. His academic background highlights a blend of strong theoretical knowledge and applied research, establishing a solid platform for his distinguished career in engineering innovation.

Honors and Awards

Dr. Jungsoo Nam has been widely recognized for his outstanding contributions to mechanical engineering and precision manufacturing through numerous prestigious honors and awards. His achievements include the Young Researcher Award at PRESM, multiple Best Paper Awards from the Korean Society for Precision Engineering, and the Korean Society of Mechanical Engineers Best Paper Award. At the Korea Institute of Industrial Technology, he was honored with both the Best Researcher Award and the President Award, reflecting his leadership and excellence in applied research. He has also received the KSPE Young Engineer Award, the Kistler Korea Technology Award, and the NAMRC Outstanding Paper recognition, further establishing his influence in the global research community. Early in his career, he earned the Graduate School Award for his dissertation with highest honors and was recognized for highly cited journal articles, including awards from the International Journal of Precision Engineering and Manufacturing. These accolades collectively highlight his innovation, impact, and sustained excellence in engineering research.

Research and Work Experience

Dr. Jungsoo Nam has built an extensive research and professional career in the field of mechanical engineering with a focus on advanced manufacturing, precision machining, and smart technologies. He has been serving as Principal Researcher at the Korea Institute of Industrial Technology, where he has led projects on hybrid 3D printing, cryogenic machining, high productivity turning centers, and machining systems for carbon fiber reinforced plastics with innovative monitoring technologies. His international research exposure includes his tenure as a Research Scholar at Purdue University, where he contributed to atomization-based spray coating, sensor fusion, and development of advanced manufacturing systems. Prior to this, he worked as a Postdoctoral Research Associate at Sungkyunkwan University, advancing IoT-based machine tool prognostics and smart factory integration with cyber-physical systems. His early career as a Graduate Student Research Assistant involved groundbreaking work on environmentally friendly micromachining, nanofluid applications, and cryogenic machining technologies. Additionally, he served in the Republic of Korea Marine Corps, demonstrating discipline and leadership that continue to complement his research endeavors.

Research Focus

Dr. Jungsoo Nam’s research focus lies primarily in the fields of precision machining, advanced manufacturing processes, and sustainable engineering technologies. His work emphasizes micro-drilling, micro-grinding, and milling of difficult-to-machine materials such as titanium alloys and carbon fiber reinforced plastics, where he has pioneered the application of nanofluid minimum quantity lubrication to enhance machining efficiency and environmental sustainability. He has also contributed significantly to the integration of artificial intelligence, machine learning, and health monitoring systems in additive manufacturing and smart factory environments, enabling predictive diagnostics and real-time process optimization. His studies often address critical challenges in aerospace, automotive, and semiconductor applications, particularly through the development of environmentally friendly machining processes using nanodiamond particles, nano-solid lubricants, and cryogenic cooling. By bridging traditional machining with emerging smart technologies, Dr. Nam has established himself as a leader in sustainable precision engineering, ensuring high-quality manufacturing performance while reducing environmental impact and improving industrial competitiveness.

Publication Top Notes

Experimental characterization of micro-drilling process using nanofluid minimum quantity lubrication
Year: 2011
Citations: 310

An experimental study on micro-grinding process with nanofluid minimum quantity lubrication (MQL)
Year: 2012
Citations: 286

Environmentally-friendly nano-fluid minimum quantity lubrication (MQL) meso-scale grinding process using nano-diamond particles
Year: 2010
Citations: 90

Optimization of environmentally benign micro-drilling process with nanofluid minimum quantity lubrication using response surface methodology and genetic algorithm
Year: 2015
Citations: 81

Machinability of titanium alloy (Ti-6Al-4V) in environmentally-friendly micro-drilling process with nanofluid minimum quantity lubrication using nanodiamond particles
Year: 2018
Citations: 76

Conclusion

Dr. Jungsoo Nam is a highly suitable candidate for the Research for Best Researcher Award. His consistent track record of impactful publications, innovative research contributions, and prestigious honors demonstrates excellence and leadership in his field. With minor improvements in global engagement, his potential for long-term influence remains exceptional.

Hakan Yaykaşlı | Engineering | Best Researcher Award

Assist. Prof. Dr. Hakan Yaykaşlı | Engineering | Best Researcher Award

Assist. Prof. Dr. Hakan Yaykaşlı | Kahramanmaraş İstiklal University | Turkey

Assist. Prof. Dr. Hakan YaykaşlΔ± is an accomplished academic specializing in materials science, mechanical engineering, and physics, with a distinguished background in advanced alloys, nanofillers, and composite materials. He holds dual doctoral degrees, one in Mechanical Engineering from Gaziantep University with a focus on nanofillers in hybrid fiber composites, and another in Materials Science and Engineering from Kahramanmaraş SΓΌtΓ§ΓΌ Imam University, where he studied the structural and mechanical properties of advanced light alloys. He also earned a master’s degree in Physics, exploring the electrical and optical properties of boron-doped thin films, and several bachelor’s degrees in physics, mechanical engineering, and occupational health and safety, along with associate degrees in machinery and emergency disaster management. His academic career includes roles as Specialist, Lecturer, and currently Assistant Professor at Kahramanmaraş Δ°stiklal University. Dr. YaykaşlΔ± has supervised numerous theses on advanced alloys, nanostructured coatings, and innovative materials, while contributing significantly to teaching, mentorship, and applied research in his field.

Publication Profile

Scopus

Google Scholar

Academic and Professional Journey

Assist. Prof. Dr. Hakan YaykaşlΔ± is a distinguished scholar with a strong academic background in physics, mechanical engineering, and materials science, reflected through his extensive education and research contributions. He earned a PhD in Mechanical Engineering from Gaziantep University with a thesis on the influence of nanofillers on the fracture and interlaminar shear properties of basalt carbon hybrid fiber reinforced composites, and another PhD in Materials Science and Engineering from Kahramanmaraş SΓΌtΓ§ΓΌ Imam University, focusing on the structural, thermal, and mechanical properties of advanced AlMgTiB light alloys. His academic journey began with a master’s degree in Physics, where he investigated the electrical and optical properties of boron-doped thin films. He also completed bachelor’s studies in physics, mechanical engineering, and occupational health and safety, along with associate degrees in machinery and emergency disaster management, reflecting his interdisciplinary expertise. Through his academic endeavors, Dr. YaykaşlΔ± has cultivated a deep understanding of advanced materials, mechanical systems, and applied research, making significant contributions to engineering and science.

Awards and Recognition

Assist. Prof. Dr. Hakan Yaykaşlı has been recognized for his academic contributions and research achievements through prestigious honors that highlight his dedication to advancing science and engineering. Among his notable recognitions is the Publication Incentive Award granted by TÜBİTAK, a highly regarded acknowledgment in Turkey that supports and encourages impactful scientific publications. This award reflects his commitment to producing high-quality research and contributing to the dissemination of knowledge in the fields of mechanical engineering, materials science, and physics. Such recognition not only underlines the academic value of his published works but also demonstrates his ability to align his research with national and international standards of excellence. The award serves as an important milestone in his career, motivating him to further expand his scientific output and continue guiding new research in advanced materials, nanotechnology, and composite structures while inspiring students and colleagues in his field.

Research Focus

Assist. Prof. Dr. Hakan Yaykaşlı’s research focus lies at the intersection of materials science, nanotechnology, and mechanical engineering, with a strong emphasis on the development and characterization of advanced functional materials. His studies explore the mechanical, structural, thermal, optical, and radiation shielding properties of alloys, composites, glasses, and nanomaterials, particularly high entropy alloys, borate and barium-based glasses, and polymer nanocomposites. He has contributed significantly to the field of nanostructured coatings, thin films, and hybrid fiber composites by investigating the role of nanofillers, dopants, and processing techniques on enhancing mechanical strength, fracture resistance, and multifunctional properties. A key area of his expertise is radiation shielding, where he develops innovative glass and alloy systems designed to provide effective protection while maintaining structural integrity. His interdisciplinary approach integrates experimental methods with advanced characterization techniques, contributing to applications in nuclear energy, electronics, aerospace, additive manufacturing, and sustainable engineering materials.

Publication Top Notes

Mechanical and dynamic properties of basalt fiber-reinforced composites with nanoclay particles
Year: 2020 | Citations: 76

Microstructural, thermal, and radiation shielding properties of Al50B25Mg25 alloy prepared by mechanical alloying
Year: 2022 | Citations: 54

Investigation of structural, morphological, mechanical, thermal and optical properties of PVA-ZnO nanocomposites
Year: 2021 | Citations: 35

Investigation of the properties of In doped NiO films
Year: 2014 | Citations: 34

Investigating the PVA/TiO2/CDs polymer nanocomposites: effect of carbon dots for photocatalytic degradation of Rhodamine B
Year: 2022 | Citations: 30

Conclusion

Assist. Prof. Dr. Hakan Yaykaşlı is a strong candidate for the Research for Best Researcher Award. His academic diversity, dual doctoral achievements, and contributions to materials science and mechanical engineering underline his significant role in advancing research. With increased international visibility and expanded research collaborations, he has the potential not only to compete strongly but also to emerge as a leading figure in his discipline, making him a suitable nominee for this recognition.

Mehrdad Esmaeilipour | Engineering | Industry Impact Award

Mr. Mehrdad Esmaeilipour | Engineering | Industry Impact Award

Mr. Mehrdad Esmaeilipour, Aria Plasma Gostar Pars, Iran

Mr. Mehrdad Esmaeilipour is a results-driven Electronics Engineer with expertise in green technology and sustainable innovation. He currently serves as a Senior Electronics Engineer at Arya Plasma Gostar Pars Company, where he leads the development of advanced air and water purification systems. He is also the founder and CEO of Parsa Pardazesh Booshehr Sanaat Company (PPBS Co.), a successful electronics and IT firm empowering students and young professionals. Mehrdad holds degrees in Electronics Engineering Technology from Islamic Azad University and has authored multiple technical books in English. His notable inventions include a patented smart bracelet for the visually impaired and a cold plasma wastewater treatment system. He has published research in AI, robotics, and control systems, and has been recognized with international awards, including the Best Innovator Award (EBP 2025). As a mentor, speaker, and conference contributor, Mehrdad exemplifies the intersection of environmental sustainability, digital health, and industrial innovation.

Publication Profile

Google Scholar

πŸŽ“ Educational Background

Mr. Mehrdad Esmaeilipour possesses a strong academic foundation in electronics, beginning with a Diploma in Electronics from Azadegan Technical High School in 2006, which laid the groundwork for his technical skills and practical understanding of electrical systems. He further advanced his education by earning an Associate’s Degree in Electronics from Islamic Azad University in 2009, where he gained deeper insights into circuit design, microcontroller applications, and system troubleshooting. Demonstrating a commitment to academic and professional growth, he completed his Bachelor’s Degree in Electronics Engineering Technology from the same university in 2012. This program enriched his expertise in advanced electronics, control systems, and design methodologies, effectively equipping him with the theoretical and practical knowledge required for innovation in green technology, robotics, and digital systems. His educational journey has been instrumental in shaping his career as a pioneering engineer, entrepreneur, and inventor with a focus on industrial impact and environmental sustainability.

πŸ’Ό Work History

Mr. Mehrdad Esmaeilipour has demonstrated a robust and impactful professional journey across engineering, entrepreneurship, and mentorship. Since 2017, he has served as Senior Electronics Engineer at Arya Plasma Gostar Pars Company, where he leads the design and development of innovative circuits for air and water purification systems using cold plasma technology. His contributions include optimizing ICs, implementing quality control, and supporting environmental sustainability initiatives. Concurrently, as CEO and Engineer at Parsa Pardazesh Bushehr Sanat Company (PPBS Co.) since 2014, he has fostered technological innovation and employment through various projects such as cybersecurity implementation and telecommunication systems. He has mentored young talents and led cutting-edge installations across academic and commercial institutions. Moreover, Mehrdad has volunteered over 550 hours with the Robotics Team at Islamic Azad University, contributing to robotics circuit design, control systems, and prototype development. His work reflects strong leadership, technical expertise, and a commitment to industry transformation through sustainable technology.

πŸ… Honors, Awards, and Certifications

Mr. Mehrdad Esmaeilipour has received multiple prestigious honors and certifications recognizing his expertise and contributions to engineering and technological innovation. In 2025, he was awarded the Best Innovator Award by the 32nd International Research Excellence and Best Paper Awards (EBP), validating his industry impact. His commitment to professional development is evident through certifications from HP Cert in Cybersecurity Awareness, Business Email, and IT for Business Success (2025). He also earned a research training certificate from Oxford Cert Universal and was recognized as an Electronic Researcher and Troubleshooting Expert by the World Technology Group in Germany (2024). In 2023, he completed a robotics and smart systems course with INT UNIONS and was certified in Solar Photovoltaic System Design by Oxford EDU Academy (2022). Earlier accolades include a letter of appreciation from Electro Sanaat-e Lian (2017) and safety training certifications from 2013 to 2014. These credentials reflect his continuous pursuit of excellence in engineering and sustainability.

πŸ”¬ Research FocusΒ 

Mr. Mehrdad Esmaeilipour’s research primarily focuses on Applied Electronics Engineering with interdisciplinary applications in Green Technology, Control Systems, and Artificial Intelligence. His contributions span the design and optimization of intelligent controllers such as Fuzzy Logic and PID systems for robotics and electric motors, highlighting his expertise in automation and motion control. He is also deeply engaged in the development of cold plasma technologies for electronic and environmental applications, including sterilization and wastewater treatment, emphasizing sustainability. His publications and patents reflect a commitment to solving industrial challenges through smart sensor systems, energy-efficient technologies, and wearable health devices like the Smart Bracelet for the visually impaired. Furthermore, his work in photovoltaic system design and lithium-ion battery technologies showcases his role in advancing clean energy systems. Integrating AI with electrical systems is a recurring theme, placing his research at the intersection of electronics, smart systems, and environmental impact, ideal for industrial innovation and societal advancement.

Publication Top Notes

  • Design, Construction and Performance Comparison of Fuzzy Logic Controller and PID Controller for Two-Wheel Balance Robot (Smart Sensors) – 2025

  • Advanced Design, Simulation, Monitoring, Control, and Maintenance Strategies for Photovoltaic Solar Power Systems (Book) – 2025

  • Advancements in Cold Plasma Technology for Electronic and Surface Sterilization Applications (JEEE) – 2025

  • Advances and Challenges in Lithium-Ion Battery Technology – 2025

  • Design of an Optimal PID Controller Utilizing AI Techniques for Brushless DC Motor with Phase Shift – 2025

  • Advancements in Cold Plasma Technology for Electronic and Surface Sterilization Applications – 2025

  • Design, Construction and Performance Comparison of Fuzzy Logic Controller and PID Controller for Two-Wheel Balance Robot (Conference) – 2025

  • An Extensive Optimization Framework for Energy Management within Energy Hubs – 2025

  • Best Innovator Awardee (EBP Award Recognition) – 2024

  • Fundamental Subject on Advanced Energy Extraction Technologies for Smart Platforms –2024

 

Jianpeng Wang | Electronic Engineering | Best Researcher Award

Prof Jianpeng Wang | Electronic Engineering | Best Researcher Award

Prof. Jianpeng Wang, Nanjing University of Science and Technology, China

Prof. Jianpeng Wang is a distinguished researcher in electronic engineering, currently serving as a Professor at the School of Electronic and Optical Engineering, Nanjing University of Science and Technology, China. He earned his Ph.D. from the University of Electronic Science and Technology of China in 2007 πŸŽ“. Prof. Wang has held international research roles in Singapore, the UK, and Macau πŸ‡²πŸ‡΄. His expertise spans microwave circuits, antennas, and LTCC-based millimeter-wave circuits πŸ“‘. He has authored 130+ publications πŸ“‘ and served as Associate Editor for IET Electronics Letters (2015–2018) πŸ“, contributing significantly to advanced electronic research.

Publication Profile

Scopus

πŸŽ“ Educational Background & Doctoral Achievement

Prof. Jianpeng Wang πŸŽ“ earned his Ph.D. in 2007 from the University of Electronic Science and Technology of China, one of the nation’s leading institutions in engineering and electronics πŸ”¬. His doctoral studies provided a rigorous foundation in advanced electronic systems, preparing him for a career of impactful research πŸ“˜. Completing his Ph.D. at a relatively young age from such a prestigious university reflects his academic excellence and dedication to the field 🧠. This strong educational background has been instrumental in shaping his research contributions in microwave circuits, antennas, and millimeter-wave technologies πŸ“‘, establishing him as a respected academic.

Research Experience

Prof. Jianpeng Wang has amassed significant international research experience through prestigious appointments across Asia and Europe 🌏. From 2005 to 2006, he served as a Research Assistant at the Institute for Infocomm Research in Singapore. He later became a Research Fellow at Nanyang Technological University from 2010 to 2011, and a Visiting Scholar at Heriot-Watt University, UK, in 2013. Between 2014 and 2016, he continued his global academic journey as a Research Fellow at the University of Macau. These roles enriched his scientific expertise 🀝 and fostered global collaborations across high-impact research projects

Research Focus

Prof. Jianpeng Wang’s research primarily focuses on advanced microwave engineering and antenna technology πŸ“‘. His work spans filter design, phase shifters, power dividers, and frequency selective surfaces (FSS), all crucial in modern communication systems such as 5G, satellite, and radar πŸ“ΆπŸ›°οΈ. He contributes significantly to simultaneous wireless information and power transfer (SWIPT), electromagnetic surfaces, and liquid crystal-based antenna designs βš‘πŸ”. With publications in high-impact IEEE journals, his research bridges theoretical innovation with practical application in RF circuits, millimeter-wave systems, and electromagnetic compatibility πŸ”πŸ“Š. His focus lies in reconfigurable, wideband, and compact components, optimizing performance in next-generation wireless networks

Publication Top Notes

  1. πŸ“„ A Differential Rectenna with Improved Power Utilization for Simultaneous Wireless Information and Power Transfer, IEEE AWPL, 2025 – πŸ“… 2025

  2. πŸ“„ Modularized Reconfigurable Functional Electromagnetic Surfaces Using Tightly Coupled Antennas, Micromachines – πŸ“… 2024

  3. πŸ“„ Ka-band Low-cost Microstrip Phase Shifter & Sum-Difference Beam Antenna Using Liquid Crystal, Electronics Letters – πŸ“… 2024

  4. πŸ“„ Design of Reflectionless Bandpass Filters Based on Asymmetric Reciprocal Filtering Network, IEEE T-MTT – πŸ“… 2024 | πŸ” 7 citations

  5. πŸ“„ Compact Balanced Filters with Wide DM Stopband and CM Rejection Band, Microwave and Optical Tech. Letters – πŸ“… 2024

  6. πŸ“„ Wideband 90Β° Phase Shifting Element in Quadrature Filtering Power Divider, IEEE MWLT – πŸ“… 2024 | πŸ” 7 citations

  7. πŸ“„ Balanced-to-Balanced Filtering Power Divider Using Triangular Patch, IEEE Access – πŸ“… 2024 | πŸ” 1 citation

  8. πŸ“„ Dual-Polarized FSS with Wide Angular Stability and High Selectivity, IEEE AWPL – πŸ“… 2024 | πŸ” 4 citations

  9. πŸ“„ Unbalanced-to-Balanced Filtering Power Divider with Sequential Rotation Phase, IEEE MWLT – πŸ“… 2024 | πŸ” 6 citations

  10. πŸ“„ Design of a Dual-band High Selective FSS, Conference Paper – πŸ“… 2024

Mohamed Dokmak | Engineering | Best Academic Researcher Award

Mr. Mohamed Dokmak | Engineering | Best Academic Researcher Award

Mr. Mohamed Dokmak, Housing and building national research center of EGYPT, Egypt

Mohamed Mahmoud Ali Ali Dokmak is an Egyptian structural engineer with over 9 years of experience at the Housing & Building National Research Center (HBRC). He holds a B.Sc. (Honors), M.Sc. in Steel Structures, and a Pre-PhD in Structural Engineering from Shoubra Faculty of Engineering, Benha University. πŸ—οΈ A technical committee member for the Egyptian Steel Code and HBRC Development Committee, his research focuses on CFRP-strengthened steel structures and composite systems. πŸ“š He has published in top journals such as Construction and Building Materials and Structures. πŸ‡ͺπŸ‡¬ Mohamed is known for blending field expertise with advanced design research

Publication Profile

Scopus

πŸŽ“ Educational Background

Mr. Mohamed Dokmak holds a distinguished academic record in structural engineering. He earned his B.Sc. degree in Structural Engineering from Shoubra Faculty of Engineering, Benha University in July 2013, graduating third in his class with an Excellent with Honors grade, and an exceptional steel structure graduation project. πŸ—οΈ He continued his studies at the same institution, completing an M.Sc. in Steel Structures in 2019. πŸ“˜ In 2020, he successfully completed the Pre-PhD year in Structural Engineering with an β€˜A’ grade, demonstrating his strong academic foundation and commitment to research excellence.

πŸ—οΈ Research Experience

Mr. Mohamed Dokmak has been actively engaged in structural engineering research at the Housing & Building National Research Center (HBRC) since July 2015, serving as an Assistant Researcher and Technical Engineer in the Structures and Steel Constructions Institute. πŸ”¬ He is a dedicated member of the Technical Secretariat for the development of the Egyptian Code for Steel Buildings since 2019. πŸ“˜ Additionally, he served on the HBRC Construction Development Committee from 2019 to 2024. 🏒 His work integrates practical engineering knowledge with national standards development, contributing significantly to Egypt’s construction research sector.

πŸ”¬ Research Focus

Mr. Mohamed Dokmak’s research primarily centers on structural engineering, with a focus on steel structures, composite systems, and structural strengthening using advanced materials like CFRP (Carbon Fiber Reinforced Polymer). πŸ—οΈ His studies investigate the behavior and performance of hollow steel sections and the interaction between innovative concrete slabs and CF’S beams. His work integrates experimental analysis, design optimization, and material innovation, contributing to safer and more efficient construction technologies. πŸ“ His research advances sustainable, high-performance solutions in civil engineering, particularly for buildings and infrastructure systems.

Publication Top Notes

πŸ“˜ “Behavior of hollow steel sections strengthened with CFRP” – Construction and Building Materials, 2019 – Cited by 150+ πŸ§ͺ
πŸ”— DOI:10.1016/j.conbuildmat.2019.01.237

πŸ“‘ “Major Parameters Governing the Strength of Hollow Steel Sections Strengthened by CFRP” – Egypt Steel 19 Conference, 2019 – Cited by 15+ πŸ“Š

πŸ—οΈ “Investigating the composite action between innovative concrete slabs and CF’S beams” – Structures, 2025 – New Publication
πŸ”— DOI:10.1016/j.istruc.2025.109399