Hamid El Qarnia | Thermal Energy | Best Researcher Award

Hamid El Qarnia | Thermal Energy | Best Researcher Award

Prof. Hamid El Qarnia at Cadi Ayyad University | Morocco

Prof. Hamid El Qarnia is a renowned scholar in thermal sciences and renewable energy systems, with decades of teaching and research experience. He is a Full Professor at the Department of Physics, Faculty of Sciences Semlalia, Cadi Ayyad University, Marrakesh, Morocco. His expertise spans heat and mass transfer, phase change materials, solar energy systems, thermal energy storage, cooling of electronic components, and computational fluid dynamics. Widely published in international journals and conferences, he has collaborated globally and contributed significantly to sustainable energy solutions. His academic leadership, supervision, and editorial service reflect his lasting impact on science and engineering.

Professional Profile

SCOPUS

Education 

Prof. El Qarnia holds a Ph.D. in Mechanical Engineering from the University of Sherbrooke, Canada, and a Doctorat in Energetics from Cadi Ayyad University, Morocco.

Experience 

He began his academic career at Cadi Ayyad University, advancing through all ranks to Full Professor. He has also taught and conducted research at the University of Sherbrooke in Canada, at ENERSTATE in Canada, and has served as a visiting professor in France. In addition, he has taught at the Private University of Marrakesh and at Mohammed VI University in Benguérir. Over the course of his career, he has taught courses in heat transfer, thermodynamics, mechanics, and fluid dynamics, while supervising numerous graduate and undergraduate students. He has also played an active role in faculty committees, research collaborations, and scientific community service.

Professional Development

Prof. El Qarnia has significantly advanced the academic and research landscape of thermal sciences through leadership and active engagement. He has organized and chaired major international scientific events, ensuring a platform for collaboration and knowledge exchange. He serves on scientific, editorial, and organizing committees of international conferences, as well as editorial boards of peer-reviewed journals. As a reviewer for journals, conferences, and research projects, he has contributed to the dissemination and quality of global research. He has authored book chapters, led funded projects, examined dissertations, and carried out research stays abroad. His career reflects a strong commitment to education, research, and international cooperation.

Research Interests 

Prof. El Qarnia’s research focuses on heat and mass transfer, phase change materials (PCM), and advanced thermal energy storage systems . He has extensively worked on solar energy systems, cooling technologies for electronics and Li-ion batteries, and innovative heat exchangers. His studies combine experimental methods, thermodynamics, and computational fluid dynamics (CFD) to optimize efficiency and sustainability. A key aspect of his work is the development of energy storage systems using PCMs, essential for renewable energy integration and green technologies. By advancing heat transfer enhancement techniques, he addresses pressing challenges in sustainable energy, climate adaptation, and energy-efficient engineering.

Awards and Recognitions 

Prof. El Qarnia is widely recognized in the scientific community for his contributions to energy and thermal sciences. He has organized and chaired international conferences, delivered keynote lectures, and served as session chair in global scientific events. He has authored book chapters, reviewed research projects, and served as a jury member for numerous dissertations. His involvement as a reviewer, editorial board member, and research collaborator with universities abroad highlights his strong international presence. His distinguished service as a mentor, organizer, and scientific leader demonstrates his enduring contributions to academic excellence and innovation.

Top Noted Publications 

Title: 3D Two Phases Reduced Model of a Rock Bed Thermocline Thermal Energy Storage Unit: Parametric Study on Thermal Performances
Year: 2025

Title: Acoustic, Mechanical, and Thermal Characterization of Polyvinyl Acetate (PVA)-Based Wood Composites Reinforced with Beech and Oak Wood Fibers
Year: 2025

Title: A New Modelization of Concentrated/Simple Industrial InGaP/InGaAs/Ge and Silicon Solar Cells: Insights on High Leverage Variables
Year: 2025

Title: Electrification of Africa through CPV Installations in Small-Scale Industrial Applications: Energetic, Economic, and Environmental Analysis
Year: 2022

Conclusion

Prof. Hamid El Qarnia’s career demonstrates a deep commitment to renewable energy, heat transfer, and advanced thermal systems. Through decades of teaching, pioneering research, and international collaboration, he has established himself as a leading figure in energy science and engineering. His dedication to sustainable solutions and his mentorship of young researchers have left a lasting mark on academia and industry alike.

Ahmet Hasçelik | Renewable Energy | Best Researcher Award

Ahmet Hasçelik | Renewable Energy | Best Researcher Award

Mr. Ahmet Hasçelik, Afyon Kocatepe University , Turkey.

Tymon Nieduzak | Renewable Energy | Best Researcher Award

Tymon Nieduzak | Renewable Energy | Best Researcher Award

Mr. Tymon Nieduzak, Columbia University , United States.

Vikram Singh | Renewable Energy | Best Researcher Award

Vikram Singh | Renewable Energy | Best Researcher Award

Mr. Vikram Singh, National Institute of Technology, India.

Vikram Singh is a dedicated researcher and educator in electrical engineering, specializing in fault detection and reconfiguration in multilevel inverters for renewable energy systems ⚡🌱. Currently pursuing a Ph.D. at NIT Raipur, he has extensive experience in power electronics, artificial intelligence applications, and renewable energy. With a strong background in hardware and software simulation, he has contributed to multiple international conferences and journals 📚. Vikram has also worked as an Assistant Professor at Kalinga University and actively participates in academic workshops and training programs. His passion for innovation and academic excellence drives his research in power system resilience🚀

Publivation Profiles

Orcid

Education and Experience

✅ Ph.D. (Pursuing) – NIT Raipur, Specialization: AI-Based Fault Detection in Multilevel Inverters (2021-Present)
✅ M.Tech (Electrical Power & Energy Systems) – NIT Srinagar, 2016-2018
✅ B.E. (Electrical Engineering) – SSGI Bhilai, 2011-2015
✅ 12th (HSC) – BMV Raipur, 2010-2011
✅ 10th (SSC) – BMV Raipur, 2008-2009

💼 Work Experience:
🔹 Research Scholar – NIT Raipur (2021-Present)
🔹 Assistant Professor – Kalinga University, Raipur (Nov 2019 – Jan 2021)

Suitability summary for best researcher Award

Mr. Vikram Singh, a promising researcher and Ph.D. candidate in Electrical Engineering at the National Institute of Technology, Raipur, is awarded the Best Researcher Award for his exceptional contributions in the fields of power electronicsfault detection, and renewable energy systems. His pioneering work, particularly in the application of artificial intelligence techniques in multilevel inverters and renewable energy systems, has had a significant impact on the development of smarter and more resilient power systems. Vikram’s innovative approach and dedication to advancing energy solutions make him a standout researcher in his field.

Professional Development

Vikram Singh is deeply committed to continuous learning and professional growth in power electronics and renewable energy systems ⚡🌿. He has successfully cleared GATE (2016, 2017, 2018) and completed a certified Python Data Analytics course 🖥️. Actively involved in academic workshops and conferences, he participated in PhD Summer Schools at IIT Bhubaneswar and MANIT Bhopal 🎓. He has also contributed as an organizer for SERB-sponsored workshops. His expertise spans MATLAB, Simulink, PSIM, PLECS, FPGA, and dSPACE controllers, enhancing his analytical and simulation skills for cutting-edge research in AI-powered fault detection🏅📊

Research Focus

Vikram Singh’s research primarily focuses on power electronics, artificial intelligence, and renewable energy systems ⚡🌍. His Ph.D. work revolves around AI-based fault detection and reconfiguration in multilevel inverters, crucial for enhancing the reliability and efficiency of standalone and grid-connected renewable energy systems. His expertise extends to machine learning algorithms, FPGA-based control systems, and hybrid inverter design. Vikram has published extensively in IEEE, Springer, and SCI-indexed journals, contributing to advancements in fault-tolerant power systems. His work aims to develop intelligent, resilient, and sustainable energy solutions for the future of renewable power generation🔋🔗

Publication Top Noted

1️⃣ Switch fault identification scheme based on machine learning algorithms for PV-Fed three-phase neutral point clamped inverter (📰 e-Prime – Advances in Electrical Engineering, Electronics and Energy, 2024) 📑

2️⃣ Open circuit fault diagnosis and fault classification in multi-level inverter using fuzzy inference system (📰 Serbian Journal of Electrical Engineering, 2023) 📑

3️⃣ Combined Wavelet and ANN-Based Open-Switch Fault Detection and Classification in PV-Fed Multilevel Inverter (📰 Journal of The Institution of Engineers (India): Series B, 2023) 📑

4️⃣ Open Switch Fault Diagnosis of Three-Phase Battery-Fed Capacitor Clamped Inverter using Machine-Learning Algorithm (📑 1st International Conference on Circuits, Power and Intelligent Systems (CCPIS), 2023)

5️⃣ Open-Switch Fault Detection and Classification in Five-Level Neutral-Point-Clamped Inverter by Using Fuzzy Interface System (📑 IEEE Global Conference on Computing, Power and Communication Technologies (GlobConPT), 2022) 📑

6️⃣ Harmonic Reduction and Reactive Power Improvement using Shunt Active Power Filter and Thyristor-Controlled Reactor (📑 Second International Conference on Power, Control and Computing Technologies (ICPC2T), 2022) 📑

7️⃣ Performance Evaluation of A Shunt Active Power Filter For Current Harmonic Elimination (📑 IEEE Region 10 Symposium (TENSYMP), 2021) 📑

 

Muhammad Zeeshan Malik | Renewable Energy | Best Researcher Award

Muhammad Zeeshan Malik | Renewable Energy | Best Researcher Award

Dr. Muhammad Zeeshan Malik, Taizhou University, China.

Publication profile

Googlescholr

Education and Experience

  • 🎓 Ph.D. in Electrical & Electronics Engineering – Zhejiang University, Hangzhou, China (2013-2017)
  • 🎓 Master’s in Electrical Engineering – Chongqing University, China (2010-2012)
  • 📖 Associate Professor – Taizhou University, Zhejiang, China (April 2021–Present)
  • 📖 Associate Professor – Huaiyin Institute of Technology, Huaiyin, China (2018-2021)
  • 🔬 Research Associate – Zhejiang University, China (2013-2017)
  • 🏫 Lecturer – Rachna College of Engineering & Technology, Gujranwala, Pakistan (2012-2013)

Suitability For The Award

Dr. Muhammad Zeeshan Malik’s extensive research portfolio and contributions make him an outstanding candidate for the Best Researcher Award. His expertise spans several critical areas, including power electronics, renewable energy systems, and energy integration. His innovative work has contributed significantly to the fields of electrical and electronics engineering, with particular emphasis on sustainable energy solutions.

Professional Development 

Awards and Honors 

  • 🌍 Listed in the top 2% of scientists worldwide by Stanford University and Elsevier (2023)
  • 🏅 Participated in the International Cultural Festival, Chongqing University, China (2010)
  • 🏸 Achieved certification in International VS Chinese badminton game, Chongqing University (2012)

Publications

  • “Investigation of MPPT techniques under uniform and non-uniform solar irradiation condition–a retrospection” – 257 citations, 2020 📈
  • “Solar irradiance measurement instrumentation and power solar generation forecasting based on Artificial Neural Networks (ANN): A review of five years research trend” – 204 citations, 2020 ☀️🤖
  • “Environmental impacts of hazardous waste, and management strategies to reconcile circular economy and eco-sustainability” – 156 citations, 2022 ♻️🌍
  • “Design and comparative exergy and exergo-economic analyses of a novel integrated Kalina cycle improved with fuel cell and thermoelectric module” – 66 citations, 2020 ⚙️🔋
  • “Review of online and soft computing maximum power point tracking techniques under non-uniform solar irradiation conditions” – 62 citations, 2020 🌞📊
  • “Ocean thermal energy conversion (OTEC) system boosted with solar energy and TEG based on exergy and exergo-environment analysis and multi-objective optimization” – 53 citations, 2020 🌊🔆
  • “A review on design parameters and specifications of parabolic solar dish Stirling systems and their applications” – 52 citations, 2022 📡🌡️
  • “Strategic planning of renewable distributed generation in radial distribution system using advanced MOPSO method” – 52 citations, 2020 ⚡📈

Dr. Ke Lu| Energy Storage Award | Young Scientist Award

Dr. Ke Lu| nanomaterial-advanced material Award | Young Scientist Award

Dr. Ke Lu, Anhui University, China 

Dr. Ke Lu is a distinguished Professor and PhD Supervisor at Anhui University, specializing in materials science and electrochemistry. With an extensive academic background, including a PhD in Physical Chemistry from Shandong University and postdoctoral experience at Northern Illinois University/Argonne National Laboratory, Dr. Lu has emerged as a leader in catalysis and battery technologies. His research focuses on advancing metal-sulfur/iodine batteries and developing innovative heterojunction electrocatalysts for energy storage applications.

Professional Profile:

scopus

Google Scholar

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Education and Achievements 🎓

Dr. Lu’s academic journey includes a Bachelor’s degree in Applied Chemistry from Jiangsu Normal University and significant accolades such as the Outstanding Postdoctoral Research Award from Northern Illinois University and various prestigious scholarships throughout his academic career.

Research Focus 🔬

His research group explores novel approaches to catalytic effects in battery systems, collaborating with esteemed researchers like Prof. Ruiguo Cao (University of Science and Technology of China) and Prof. Wenli Zhang (Guangdong University of Technology). Notably, Dr. Lu’s work on metal/metal oxide sulfide heterojunction electrocatalysts, in collaboration with Dr. Yingwen Cheng (University of Tennessee), has advanced the field of renewable energy.

Academic Leadership and Engagement 🌍

Dr. Lu actively mentors a diverse group of students and researchers, contributing to courses on modern instrumentation and electrochemical research. He serves on editorial boards for leading scientific journals and plays key roles as a reviewer for top-tier publications.

Research Funding and Impact 💡

As Principal Investigator, Dr. Lu has secured multiple research grants from national and provincial funding agencies, enabling groundbreaking projects in battery technology and materials innovation. His applied research projects, particularly in low-temperature electron microscopy and graphene coatings, highlight his commitment to bridging academic research with industrial applications.

Publication Top Notes :

Encapsulation of zinc hexacyanoferrate nanocubes with manganese oxide nanosheets for high-performance rechargeable zinc ion batteries

Citation -203

A rechargeable iodine-carbon battery that exploits ion intercalation and iodine redox chemistry

Citation -184

A rechargeable Na-Zn hybrid aqueous battery fabricated with nickel hexacyanoferrate and nanostructured zinc

Citation -135

An advanced aqueous sodium-ion supercapacitor with a manganous hexacyanoferrate cathode and a Fe 3 O 4/rGO anode

Citation -132

Sulfur and nitrogen enriched graphene foam scaffolds for aqueous rechargeable zinc-iodine battery

Citation -111