Fujin Deng | FRP in Renewable Energy | Best Researcher Award

Prof. Fujin Deng | FRP in Renewable Energy | Best Researcher Award

Professor at Southeast University, China

Profiles:

Current Position 🏛️

Dr. Fujin Deng is currently a Professor and the Head of the Department of Power Electronics at the School of Electrical Engineering, Southeast University (SEU), China. Since May 2017, he has been contributing extensively to the field of renewable energy and power electronics technology. With his deep expertise and leadership, Dr. Deng is at the forefront of cutting-edge research in high-voltage technologies, positioning himself as a vital figure in the field.

Publication Achievements 📚

Dr. Deng has made significant contributions to the world of academia, particularly in the field of power electronics. His research has resulted in numerous publications focusing on modular multilevel converters (MMCs), high-voltage direct current (HVDC) systems, and DC grid control. His work has been extensively cited, reflecting the practical relevance and impact of his research on real-world power systems. Through his innovative work, Dr. Deng has established a strong academic footprint in renewable energy and power electronics applications.

Ongoing Research 🔬

Currently, Dr. Deng is leading several notable projects funded by national and international research bodies. Among these is the National Natural Science Foundation of China Joint Fund (2024-2027), where he is investigating bipolar modular AC-AC inverter technology for offshore low-frequency transmission. He is also the Principal Investigator (PI) for a project under the National Key Research and Development Program of China (2023-2025), focusing on multi-objective optimization control of hybrid microgrids. His research spans critical areas such as grid integration of large-scale renewable energy, digital twin-based optimization for HVDC transmission, and artificial intelligence (AI) in HVDC systems.

Research Interests 🔍

Dr. Deng’s primary research interests revolve around the application of power electronic technology in renewable energy systems, with a specific focus on wind energy. His expertise covers:

  • Modular Multilevel Converters (MMCs): A critical technology for HVDC and flexible AC transmission systems.
  • High-voltage direct current (HVDC) systems: Leveraging power electronics to enable efficient long-distance power transmission.
  • DC grid control: Essential for the future of DC-based renewable energy networks.
  • DFIG/PMSG-based wind turbine control: Key for optimizing performance in wind farms.

His research contributes to increasing the efficiency and reliability of renewable energy systems, making him a prominent thought leader in the development of sustainable power solutions.

Academic Background 🎓

Dr. Deng’s distinguished academic journey began with a Bachelor’s degree in Electrical Engineering and Automation from the China University of Mining and Technology (CUMT) in 2005. He then pursued a Master’s degree in Electrical Engineering at Shanghai Jiao Tong University (SJTU), graduating in 2008. Dr. Deng completed his PhD in Energy Technology at the prestigious Aalborg University (AAU), Denmark, in 2012, specializing in power electronics for energy systems. His international education has provided him with a comprehensive and global perspective on the challenges and advancements in electrical engineering and renewable energy.

Scholarships and Awards 🏅

Throughout his career, Dr. Deng has received numerous scholarships and awards in recognition of his contributions to power electronics and renewable energy technology. His innovative research on HVDC systems and modular multilevel converters has earned him accolades from prestigious bodies like the National Natural Science Foundation of China and Jiangsu Key Laboratory. Dr. Deng’s leadership in pioneering technologies places him as a contender for top honors in the field.

Bioinformatics and Renewable Energy 🌿

Dr. Deng integrates bioinformatics principles into his work on renewable energy systems, particularly in the optimization of grid control and fault diagnosis in HVDC systems. His ability to blend data-driven methodologies with traditional engineering principles showcases his innovative approach to addressing modern energy challenges.

Professional Associations 🤝

Dr. Deng is an active member of several professional associations within the electrical engineering and renewable energy communities. His participation in these organizations not only helps him stay updated with the latest advancements but also provides a platform for collaboration with other experts. Through these memberships, he continually contributes to shaping the future of energy technologies.

Training & Workshops 🎓

Dr. Deng has been involved in a number of training programs and workshops, where he shares his expertise on power electronics and renewable energy integration. His training sessions often focus on practical applications of technologies like modular multilevel converters and HVDC systems, offering participants the opportunity to gain hands-on experience.

Oral Presentations 🎤

Dr. Deng has delivered numerous oral presentations at international conferences, showcasing his work in renewable energy and power electronics. His presentations have highlighted innovations in fault-tolerant control, energy-efficient systems, and hybrid microgrid optimization, cementing his reputation as a leading voice in the field.

Tasks Completed as a Researcher 🛠️

As a Principal Investigator (PI), Dr. Deng has successfully completed several high-profile research projects. His work on artificial intelligence-driven HVDC systems, fault diagnosis, and tolerant control for HVDC transmission systems has had significant implications for both academia and industry. Dr. Deng’s leadership in these projects has positioned him as a driving force in the advancement of energy technologies.

Success Factors 🌟

Dr. Deng’s success can be attributed to his ability to integrate multidisciplinary approaches, combining power electronics, renewable energy technologies, and AI. His global experience and forward-thinking research allow him to develop solutions that are both innovative and practical, ensuring a sustainable future for power systems.

Publications & Laboratory Experience 🧑‍🔬

Dr. Deng’s extensive publication record showcases his deep expertise in power electronics and renewable energy. His laboratory experience with cutting-edge technologies like MMCs and HVDC systems enables him to conduct experimental research that directly contributes to the development of real-world applications. His work on improving energy efficiency and reliability through bio-material applications and smart grid technologies further solidifies his standing as a top researcher.

📖Publications:

Paper Title: High-performance optical dialogue for power electronic system

  • Authors: Lin, D., Deng, F., Hua, W., Cheng, M., Wang, Z.
  • Journal: Applied Energy
  • Year: 2024

Paper Title: Design and optimization of high torque density flux modulated multi-winding permanent magnet machines for electric vehicles

  • Authors: Wang, S., Zhang, J., Deng, F.
  • Journal: Energy
  • Year: 2024

Paper Title: PLPR-Based Predictive Control for LCL-Filtered Voltage Source Inverters

  • Authors: Yin, Z., Deng, F., Ghanem, A., Kaddah, S.S., Abulanwar, S.
  • Journal: IEEE Transactions on Power Electronics
  • Year: 2024

Paper Title: Grounded Thyristor Loop-Based Hybrid MMCs for Valve-Side Single-Phase-to-Ground Faults in Bipolar HVdc Systems

  • Authors: Li, H., Deng, F., Tian, J., Li, G., Lin, J.
  • Journal: IEEE Transactions on Power Electronics
  • Year: 2024

Paper Title: A Capacitance Monitoring Strategy Based on Offset Error Compensation for Modular Multilevel Converters

  • Authors: Jiang, H., Deng, F., Li, H., Lu, Y., Li, G.
  • Journal: Energies
  • Year: 2024

 

Remi vincent | FRP in Renewable Energy | Best Researcher Award

Dr. Remi vincent | FRP in Renewable Energy | Best Researcher Award

Doctorate at university Grenoble Alpes (CEA Grenoble), France

Profiles:

🎓📚Early Academic Pursuits

Rémi Vincent was born in 1979 in Nîmes, France. His early academic journey saw him excel in the sciences, paving the way for his later accomplishments in research and engineering. He pursued his engineering degree at EFPG (École Française de Papeterie et des Industries Graphiques), a prestigious French school specializing in printing and paper, graduating in 2003. During his time at EFPG, Vincent developed a solid foundation in material sciences, process engineering, and the complexities of fibrous structures.

Following his engineering degree, Vincent furthered his studies by pursuing a Ph.D. at Grenoble University, focusing on modeling and process engineering. His doctoral research, completed in 2006, was centered on the “Modeling of fibrous structure and prediction of physical properties.” This work involved simulating 3D fibrous networks, modeling tensile strength characteristics, and conducting flow simulations through fibrous structures using the “Lattice Boltzmann” method. His Ph.D. research resulted in three significant publications, establishing him as a promising researcher in the field.

🏢Professional Endeavors

ArjoWiggins Group (2006-2009)

After completing his Ph.D., Vincent joined the ArjoWiggins Group as a research engineer at their research center in Apprieu, France. During his tenure from 2006 to 2009, he worked on developing bank note papers and anti-forgery systems. His responsibilities included formulating functional coatings to enhance the durability of bank notes, optimizing paper structure, printability, strength, and roughness. Additionally, he was involved in the development and modeling of paper and coating processes. Vincent’s work at ArjoWiggins resulted in four published patents, showcasing his ability to innovate in the field of materials engineering.

CEA-Grenoble (2009-Present)

In 2009, Vincent transitioned to a role as a researcher at CEA-Grenoble, where he has made substantial contributions to the field of lithium battery safety and development. His work at CEA-Grenoble includes:

Safety Solutions for Lithium Batteries:

Vincent has been instrumental in developing mitigation solutions to enhance the safety of lithium batteries. This work involves designing specific abusive tests to evaluate battery safety, resulting in five publications and 32 published patents.

Electrode Development for Lithium Batteries:

He spent six months in Bolivia setting up a cathode manufacturing pilot line and formulating lithium sulfur cathodes. His efforts in this area led to one publication and 12 published patents.

MEA and MEA Components for PEMFC:

Vincent has significantly advanced the development of Membrane Electrode Assemblies (MEA) and their components for Proton Exchange Membrane Fuel Cells (PEMFC). His work includes formulating active layers and microporous layer functional inks for various printing processes, developing Gas Diffusion Layers (GDL) via papermaking processes, optimizing MEA in relation to bipolar plate designs, and analyzing the impact of operational strategies on MEA durability. He has also designed and optimized pilot lines for electrode and MEA assembly, with projects producing 1500 m²/day and 5000 m²/day respectively. His contributions in this area are documented in six publications and 41 published patents.

🔬Contributions and Research Focus

Vincent’s research has predominantly focused on enhancing the safety, efficiency, and durability of lithium batteries and fuel cells. His work encompasses:

Developing innovative solutions to mitigate safety risks in lithium batteries.

Pioneering the formulation and manufacturing of high-performance electrodes.

Advancing the design and production of MEA components for fuel cells.

Conducting extensive research on the impact of operational strategies on the durability of MEAs.

🏅Accolades and Recognition

Throughout his career, Rémi Vincent has received recognition for his innovative contributions to materials science and engineering. His numerous publications and extensive patent portfolio highlight his expertise and impact in the field. Notable accomplishments include:

32 patents on lithium battery safety solutions.

12 patents on electrode development for lithium batteries.

41 patents on MEA and MEA component development for PEMFC.

Multiple publications in peer-reviewed journals, demonstrating the breadth and depth of his research.

🌍Impact and Influence

Vincent’s work has had a significant impact on the fields of energy storage and fuel cell technology. His research on lithium battery safety has contributed to the development of safer, more reliable energy storage solutions, which are critical for a wide range of applications, from consumer electronics to electric vehicles. His innovations in MEA and fuel cell technology have advanced the efficiency and durability of fuel cells, making them more viable for commercial and industrial use.

🌟Legacy and Future Contributions

As a leading researcher at CEA-Grenoble, Rémi Vincent continues to push the boundaries of materials science and engineering. His ongoing projects and future research endeavors promise to yield further advancements in energy storage and conversion technologies. Vincent’s legacy lies in his dedication to improving the safety, performance, and sustainability of critical energy technologies, positioning him as a key figure in the ongoing evolution of these fields.

📖Publications:

Paper Title: Can the shock wave generated by the thermal runaway of a lithium-metal all-solid-state cell be predicted by material-scale analysis

  • Authors: Charbonnel, J., Bengaouer, A., Thivel, P.-X., Vincent, R.
  • Journal: Chemical Engineering Journal
  • Year: 2024

Paper Title: First Experimental Assessment of All-Solid-State Battery Thermal Runaway Propagation in a Battery Pack

  • Authors: Darmet, N., Charbonnel, J., Reytier, M., Broche, L., Vincent, R.
  • Journal: ACS Applied Energy Materials
  • Year: 2024

Paper Title: Hybrid Ceramic Polymer Electrolytes Enabling Long Cycling in Practical 1 Ah-Class High-Voltage Solid-State Batteries with Li Metal Anode

  • Authors: Boaretto, N., Meabe, L., Lindberg, S., Daniel, L., Martinez-Ibañez, M.
  • Journal: Advanced Functional Materials
  • Year: 2024

Paper Title: Preliminary study of all-solid-state batteries: Evaluation of blast formation during the thermal runaway

  • Authors: Charbonnel, J., Dubourg, S., Testard, E., Thivel, P.-X., Vincent, R.
  • Journal: iScience
  • Year: 2023

Paper Title: High-Frequency Voltage and Current Probes for Measurement at Distance with an Oscilloscope

  • Authors: Chauvin, J., Chatroux, D., Garnier, L., Azaïs, P., Vincent, R.
  • Journal: PCIM Europe Conference Proceedings
  • Year: 2023