Jun Jiang | Electrical Engineering | Best Researcher Award

Prof Dr. Jun Jiang l Electrical Engineering | Best Researcher Award

Nanjing University of Aeronautics and Astronautics, China

Author Profile

Google Scholar

🧑‍🎓 Early Academic Pursuits

Prof. Dr. Jun Jiang’s academic journey began with a strong foundation in electrical engineering, leading him to earn his position as a prominent scholar in the field. After completing his initial studies, he pursued further research and academic development at various institutions, which shaped his expertise in high voltage engineering and electrical insulation. His passion for research grew during his tenure as an Honorary Staff/Visiting Scholar at The University of Manchester, UK, from 2019 to 2020, which marked an important milestone in his academic career.

💼 Professional Endeavors

Dr. Jun Jiang has made significant strides in both the academic and practical realms of electrical engineering. As a Lecturer, Associate Professor, and now Research Professor at the Department of Electric Engineering at Nanjing University of Aeronautics and Astronautics since 2016, Dr. Jiang has balanced teaching with innovative research in his field. His expertise spans across high voltage engineering, electrical insulation, dielectric phenomena, and partial discharge detection, contributing greatly to both academia and industry.

🔬 Contributions and Research Focus

Dr. Jiang’s research has profoundly impacted areas such as high voltage engineering, dielectric materials, and fault detection in electrical systems. His work on series arcing in more electric aircraft DC power systems and the detection of methane using tunable diode lasers has garnered global recognition. Notably, his research on dissolved acetylene detection in power transformer oil and partial discharge detection methods has led to groundbreaking developments in improving the safety and efficiency of electrical systems. His innovations extend to the realm of high-voltage solid-state switches and fault detection technologies, with over 30 patents to his name.

🌍 Impact and Influence

Dr. Jiang has earned international recognition for his contributions to electrical engineering. His role as a representative in multiple prestigious technical working groups, such as Cigre WG D1_A2_77 and WG B3/A3.60, has cemented his influence on global standards in electrical equipment testing and user guidelines for gas mixtures in substations. Furthermore, his involvement in over 30 academic conferences and symposia worldwide has helped shape the direction of future research in his areas of expertise.

📚 Academic Cites and Recognitions

Dr. Jiang’s research output, including papers presented at high-profile international conferences like the International Symposium on High Voltage Engineering, has been widely cited, underscoring the relevance and importance of his contributions to the field. He has received numerous accolades, including the Young Researcher Award at the 18th International Symposium on High Voltage Engineering in 2013, and Excellent Academic Paper and Presentation Awards from various IEEE events.

💡 Technical Skills

Dr. Jiang’s technical acumen spans multiple domains within electrical engineering. His work is particularly noted for its focus on high voltage engineering, dielectric materials, and fault detection. His skills in optical fiber-based fault detection, dissolved gas analysis, and partial discharge detection methods have positioned him as a leader in the development of innovative diagnostic and monitoring systems for electrical systems.

🎓 Teaching Experience

With a career dedicated to both research and education, Dr. Jiang has mentored numerous students at the undergraduate, graduate, and doctoral levels. As a professor at Nanjing University of Aeronautics and Astronautics, he has not only contributed to the academic success of his students but also incorporated his research findings into the curriculum, ensuring that his students are at the cutting edge of electrical engineering advancements.

📈 Legacy and Future Contributions

Dr. Jiang’s legacy is firmly rooted in his innovative contributions to the field of electrical engineering, especially in areas like partial discharge detection and high voltage equipment testing. As he continues to push the boundaries of electrical safety and efficiency, his work is set to inspire future generations of engineers and researchers. His ongoing research and participation in global initiatives signal a promising future, with further advancements in electrical fault detection, high-voltage engineering, and sustainable energy solutions.

🌐 Global Influence and Collaborations

Dr. Jiang’s extensive network of collaborations, including his work as a peer reviewer for more than 30 academic journals, has further amplified his influence in the field. His involvement in IEEE and CIGRE working groups has allowed him to shape critical industry standards and guidelines, reinforcing his impact on both the academic community and the engineering industry worldwide.

📖 Top Noted Publications 
Dynamic Fault Prediction of Power Transformers Based on Hidden Markov Model of Dissolved Gases Analysis
    • Authors: J Jiang, R Chen, M Chen, W Wang, C Zhang
    • Journal: IEEE Transactions on Power Delivery
    • Year: 2019
High sensitive and reliable fiber Bragg grating hydrogen sensor for fault detection of power transformer
    • Authors: G Ma, C Li, Y Luo, R Mu, L Wang
    • Journal: Sensors and Actuators B: Chemical
    • Year: 2012
Optical sensors for power transformer monitoring: A review
    • Authors: G Ma, Y Wang, W Qin, H Zhou, C Yan, J Jiang, Y Ju
    • Journal: High Voltage
    • Year: 2021
Series Arc Detection and Complex Load Recognition Based on Principal Component Analysis and Support Vector Machine
    • Authors: J Jiang, Z Wen, M Zhao, Y Bie, M Tan, C Zhang
    • Journal: IEEE Access
    • Year: 2019
Designing epoxy insulators in SF6-filled DC-GIL with simulations of ionic conduction and surface charging
    • Authors: G Ma, H Zhou, C Li, J Jiang, X Chen
    • Journal: IEEE Transactions on Dielectrics and Electrical Insulation
    • Year: 2015
Multi-Gas Detection in Power Transformer Oil Based on Tunable Diode Laser Absorption Spectrum
    • Authors: J Jiang, Z Wang, X Han, C Zhang, G Ma, C Li, Y Luo
    • Journal: IEEE Transactions on Dielectrics and Electrical Insulation
    • Year: 2019
TDLAS-based detection of dissolved methane in power transformer oil and field application
    • Authors: J Jiang, M Zhao, G Ma, H T Song, C R Li, X Han, C Zhang
    • Journal: IEEE Sensors Journal
    • Year: 2018

Armand Fopah Lele | Waste to energy | Best Researcher Award

Assist Prof Dr. Armand Fopah Lele | Waste to energy | Best Researcher Award

University of Buea, Cameroon

Author Profile

Google Scholar

Early Academic Pursuits 🎓

Dr. Armand Fopah Lele’s academic journey began with his foundational education in Mathematics and Physics, earning his Baccalaureate in 2003 from Lycée de Bafoussam, Cameroon. He continued his studies at the University of Yaoundé 1, where he obtained a Bachelor of Physics in 2006, followed by two Master’s degrees in Physics (2007 and 2009), one of which was a Master of Science with a thesis (D.E.A.). His academic pursuits reached their zenith at Leuphana University of Lüneburg, Germany, where he earned his Doctorate in Energetics in 2015, with a focus on thermochemical heat storage systems for households.

Professional Endeavors 💼

Dr. Fopah Lele’s career spans over a decade, marked by a consistent drive to advance the field of renewable energy and sustainability. He currently holds the position of Head of the Department of Mechanical and Industrial Engineering at the University of Buea, Cameroon, where he also serves as an Associate Professor in the Department of Electrical and Electronic Engineering. In these roles, he has been integral in shaping the department’s strategic direction, fostering international collaborations, and promoting research and academic excellence.

Before joining the University of Buea, Dr. Fopah Lele worked as the Director of Research, Innovation, and Business Relations at Ecole Supérieure des Métiers des Energies Renouvelables (ESMER) in Benin, where he was a leader in integrating innovation, entrepreneurship, and sustainable energy practices into the curriculum. He also contributed to various energy-related projects, such as a feasibility study for manufacturing small wind power plants in Benin, commissioned by ONUDI and the Department of Energy.

Contributions and Research Focus 🔬

Dr. Fopah Lele’s research has had a significant impact on energy systems and sustainability, with a particular focus on hydrogen-to-power research, renewable energy technologies, and energy storage. His work includes advancements in solar thermal electric power plants, heat recovery systems, and sustainable transportation, all aimed at enhancing sub-Saharan African development and addressing climate change challenges. He has a keen interest in exploring innovative methods of utilizing waste heat and optimizing thermochemical processes for energy efficiency. His research also extends to the development of hydrogen and fuel cell technologies, with a primary aim of contributing to the global energy transition.

Impact and Influence 🌍

Dr. Fopah Lele’s contributions have not only shaped the academic landscape but have also had a profound influence on the renewable energy sector. He has received several accolades, including the Best Thesis Award from Springer-Theses in 2016 and the 2nd German Sustainable Development Award in 2014. His work has been recognized globally, and he serves as an editor, guest editor, and reviewer for multiple prestigious scientific journals, contributing to the dissemination of knowledge in his field. As a session chair and scientific committee member for international conferences, his influence continues to resonate within academic and industry circles worldwide.

Academic Cites 📚

Dr. Fopah Lele has made significant scholarly contributions, with his work being frequently cited in academic journals, conferences, and books. His research on thermal analysis, energy storage, and sustainable energy technologies has provided a substantial foundation for both theoretical and applied advancements in the field. His influence extends beyond his own publications, as he actively collaborates with universities, research institutions, and industry players in Europe, Africa, and beyond.

Technical Skills 🛠️

his academic and research achievements, Dr. Fopah Lele is proficient in various technical and analytical skills. His expertise includes computer-aided design (CAD), simulations, thermal analysis, energy system modeling, and the design of energy-efficient systems. His strong command over both English and French, coupled with his proficiency in German, allows him to engage in cross-cultural and international collaborations seamlessly. Furthermore, his skill in utilizing editing software for scientific publications makes him a key asset in the academic publishing domain.

Teaching Experience 🍎

As an educator, Dr. Fopah Lele has been instrumental in shaping the next generation of engineers and energy professionals. His teaching portfolio includes courses on solar energy, hybrid energy systems, hydrogen technology, and renewable energy labs. He emphasizes the importance of both theoretical knowledge and hands-on experience, ensuring that students are well-equipped to address the pressing energy challenges of today. He has also guided students through research projects and internships, supporting the development of innovative solutions for real-world energy problems.

Legacy and Future Contributions 🔮

Dr. Fopah Lele’s legacy is rooted in his dedication to fostering sustainable energy practices and advancing academic excellence. Through his leadership roles at the University of Buea and ESMER, he has left a lasting impact on the development of renewable energy research in Africa. His forward-looking research on hydrogen and energy storage technologies promises to continue contributing to the global transition to clean energy. Dr. Fopah Lele is committed to mentoring future researchers and professionals, empowering them to innovate and drive sustainable change in the energy sector.

Top Noted Publications 📖

A review on the use of calcium chloride in applied thermal engineering

    • Authors: KE N’Tsoukpoe, HU Rammelberg, A Fopah Lele, K Korhammer, BA Watts, …
    • Journal: Applied Thermal Engineering
    • Year: 2015

Sorption and thermal characterization of composite materials based on chlorides for thermal energy storage

    • Authors: K Korhammer, MM Druske, A Fopah-Lele, HU Rammelberg, …
    • Journal: Applied Energy
    • Year: 2016

Lab-scale experiment of a closed thermochemical heat storage system including honeycomb heat exchanger

    • Authors: A Fopah-Lele, C Rohde, K Neumann, T Tietjen, T Rönnebeck, …
    • Journal: Energy
    • Year: 2016

Thermal decomposition kinetic of salt hydrates for heat storage systems

    • Authors: A Fopah Lele, F Kuznik, HU Rammelberg, T Schmidt, WKL Ruck
    • Journal: Applied Energy
    • Year: 2015

A review on the use of SrBr2· 6H2O as a potential material for low temperature energy storage systems and building applications

    • Authors: A Fopah-Lele, JG Tamba
    • Journal: Solar Energy Materials and Solar Cells
    • Year: 2017

Qiliang Zhu | Biosensor | Best Researcher Award

Dr. Qiliang Zhu | Biosensor | Best Researcher Award

Doctorate at University Of Science & Technology Beijing, China

 👨‍🎓Author Profile

🎓 Early Academic Pursuits

Dr. Qiliang Zhu began his academic journey with a strong foundation in Chemical Engineering and Technology, earning his M.S. degree from the China University of Geosciences, Wuhan, China, in 2017. This advanced education set the stage for his deepening exploration into the fields of physics and engineering. He is currently pursuing a Ph.D. in Physics at the University of Science and Technology Beijing, where he continues to develop his expertise in cutting-edge nanotechnology and electrochemical systems.

💼 Professional Endeavors

Dr. Zhu’s professional trajectory is shaped by his academic excellence and research prowess. As a Ph.D. candidate at the University of Science and Technology Beijing, he is at the forefront of developing innovative technologies. His research has focused on triboelectric nanogenerators and electrochemical sensors, fields that have vast potential in energy harvesting and sensor technology. His professional journey bridges chemistry, physics, and engineering, leading to his active participation in high-impact research initiatives.

🔬 Contributions and Research Focus

Dr. Zhu’s research is primarily focused on the triboelectric nanogenerators (TENGs), electrochemical sensors, and the intricate synergistic molecular recognition and interactions at the force–electric interface. These studies are crucial for advancing technologies in energy harvesting, sensor applications, and environmental monitoring. His work on TENGs and electrochemical sensors addresses critical challenges in sustainable energy and efficient, sensitive detection systems. By exploring molecular interactions at the force–electric interface, Dr. Zhu contributes to the development of more sophisticated sensing and energy technologies.

🌍 Impact and Influence

Dr. Zhu’s work has the potential to revolutionize fields like energy sustainability and advanced sensing technologies. His research into triboelectric nanogenerators could open new doors for self-powered devices, while his focus on electrochemical sensors aims to improve detection systems across various industries, including environmental monitoring, healthcare, and industrial automation. His studies not only advance scientific knowledge but also lay the groundwork for innovations with practical real-world applications.

📚 Academic Cites

As an emerging researcher, Dr. Zhu has been recognized within his field through citations and collaborations with leading scientists in the domains of nanotechnology and electrochemistry. His work on triboelectric nanogenerators and electrochemical sensors has garnered interest from prominent academic journals and research groups, contributing significantly to the body of knowledge in nanoscience and engineering.

💻 Technical Skills

Dr. Zhu is highly skilled in nanofabrication, electrochemical analysis, and molecular dynamics simulations. His expertise also extends to material science, particularly in understanding and manipulating the interactions between materials at the force–electric interface. His proficiency in data analysis and sensor technologies allows him to address complex scientific and engineering problems through innovative solutions.

🏫 Teaching Experience

While Dr. Zhu is still in the process of completing his Ph.D., he actively engages in teaching and mentoring roles at the University of Science and Technology Beijing. His involvement in academic instruction includes guiding undergraduate students in foundational concepts in physics and chemical engineering, as well as conducting hands-on research activities related to his field of study. Through these efforts, he helps cultivate the next generation of scientists and engineers.

🌟 Legacy and Future Contributions

Dr. Zhu’s research is poised to make significant contributions to sustainable energy technologies and advanced sensor systems. His work on triboelectric nanogenerators and electrochemical sensors lays the foundation for innovative solutions in energy harvesting, environmental monitoring, and biomedical applications. As he continues his doctoral studies and contributes to groundbreaking research, Dr. Zhu’s legacy is one of transforming scientific understanding and advancing technologies with far-reaching societal benefits.

📖Top Noted Publications

Biomaterial Promotes Triboelectric Nanogenerator for Health Diagnostics and Clinical Application
    • Authors: Qiliang Zhu; Enqi Sun; Yuchen Sun; Xia Cao; Ning Wang
    • Journal: Nanomaterials
    • Year: 2024
Magnetic Material in Triboelectric Nanogenerators: A Review
    • Authors: Enqi Sun; Qiliang Zhu; Hafeez Ur Rehman; Tong Wu; Xia Cao; Ning Wang
    • Journal: Nanomaterials
    • Year: 2024
Biopolymer Materials in Triboelectric Nanogenerators: A Review
    • Authors: Qiliang Zhu; Enqi Sun; Zequan Zhao; Tong Wu; Shuchang Meng; Zimeng Ma; Muhammad Shoaib; Hafeez Ur Rehman; Xia Cao; Ning Wang
    • Journal: Polymers
    • Year: 2024