Thanh Huynh | Energy markets | Best Researcher Award

Mr. Thanh Huynh | Energy markets | Best Researcher Award

Senior Energy Engineer, at Siemens AG, Germany.

Summary

Thanh Huynh, Ph.D. candidate and Senior Energy Engineer at Siemens AG, is a German-born expert in energy systems and digitalization. With a rich blend of academic and industrial experience, Thanh bridges cutting-edge research with practical applications. His professional journey spans automation engineering, energy flexibility, and local energy markets for multimodal energy systems. Thanh has contributed to multiple publications in top-tier journals and has successfully supervised several master’s theses. Fluent in German, English, and Vietnamese, Thanh thrives in multicultural environments, leveraging his expertise to foster innovation in energy systems.

Professional Profile

ORCID

Education 🎓

Thanh holds a Master of Science in Electrical Engineering, Information Technology, and Computer Engineering from RWTH Aachen (2018), where he graduated with distinction (1.3). His thesis focused on power flow controllability in medium-voltage grids using DC technology, earning a perfect score (1.0). Thanh also earned his Bachelor of Science from RWTH Aachen (2016) with a thesis on particle deposition under hybrid AC/DC fields, also graded 1.0. Beyond formal education, Thanh attended specialized programs, such as the Vietnam-Germany Summer School on Wind Power, and actively participated in global development and educational initiatives.

Experience 🛠️

Thanh’s career spans research, industry, and entrepreneurship. Since 2023, he has served as Senior Energy Engineer at Siemens AG, spearheading automation and digitalization in energy systems. Concurrently, he pursues a Ph.D. at TU Darmstadt, investigating local energy markets for multimodal energy systems. His tenure at Siemens Corporate Technology (2019–2023) focused on market algorithms for sector-coupling using advanced optimization methods. Thanh also managed the construction and administration of MIA Hotel and Café in Vietnam, showcasing his project management skills. Earlier, Thanh interned as a Research Assistant at TUMCREATE Singapore and RWTH Aachen, honing his expertise in grid modeling and linear programming.

Research Interests 🔍

Thanh’s research focuses on energy flexibility, local energy markets, and digitalization of energy systems. His Ph.D. explores thermal-electric energy systems with temperature flexibility in heating sub-networks. Thanh is passionate about developing optimized algorithms for sector-coupling and energy management, leveraging tools like Mendix, Python, and AWS. He is also interested in integrating digital twins and advanced simulation techniques to enhance energy systems’ efficiency and sustainability. Thanh’s work emphasizes bridging academic research with practical applications to address global energy challenges.

Awards 🏆

Thanh’s achievements reflect his dedication and excellence. He received the PROMOS Scholarship in 2018, enabling international research exposure. His academic work consistently earned top grades, including perfect scores for both his bachelor’s and master’s theses. Thanh’s contributions as a project leader, researcher, and engineer have been recognized in industry and academia, showcasing his leadership and innovation.

Publications 📚

Thanh has contributed to impactful research on energy systems:

  • 2024
    Title: Local multi-modal energy market for thermal-electric energy systems with temperature flexibility.
    Journal: Energy
    Authors: Thanh Huynh, P. Friedrich, S. Thiem, V. Danov, F. Steinke, S. Niessen
    DOI: 10.1016/j.energy.2024.133584
    Summary: This paper explores a local energy market framework integrating thermal and electric energy systems, considering temperature flexibility in heating networks to optimize energy exchange and efficiency.
  • 2024
    Title: Design and simulation of district heating networks: A review of modeling approaches.
    Journal: Energy
    Authors: S. Kuntuarova, T. Licklederer, Thanh Huynh, D. Zinsmeister, T. Hamacher, V. Perić
    DOI: 10.1016/j.energy.2024.132189
    Summary: A comprehensive review of methodologies and tools for modeling district heating networks, highlighting best practices for energy system optimization.
  • 2022
    Title: Local energy markets for thermal-electric energy systems considering energy carrier dependency.
    Journal: Smart Energy
    Authors: Thanh Huynh, F. Schmidt, S. Thiem, M. Kautz, F. Steinke, S. Niessen
    DOI: 10.1016/j.segy.2022.100065
    Summary: This study investigates the interaction between energy carriers and storage systems within local markets for hybrid thermal-electric energy systems, proposing solutions to improve reliability and economic viability.
  • 2020
    Title: Optimal electric-distribution-grid planning considering demand-side flexibility.
    Journal: Applied Energy
    Authors: S. Troitzsch, B. K. Sreepathi, Thanh P. Huynh, A. Moine, S. Hanif, J. Fonseca, T. Hamacher
    DOI: 10.1016/j.apenergy.2020.114917
    Summary: Focused on the integration of thermal building systems’ flexibility into electric grid planning, this paper provides an optimization framework tested in Singapore’s distribution grid.

Conclusion

Thanh Huynh is a strong candidate for the Best Researcher Award, with a compelling combination of academic excellence, professional innovation, and societal impact. His work addresses critical global challenges in energy systems and digitalization, making him a valuable contributor to both research and industry. While there is room for further outreach and diversification, his achievements to date position him as a deserving recipient of the award.

 

Amr hessein | Energy Materials | Best Researcher Award

Dr. Amr hessein, Energy Materials, Best Researcher Award

Doctorate at  Benha University, Egypt

Summary:

Amr Hessein Hassan Ali is an accomplished professional in the field of materials science and engineering. He holds a Ph.D. in Materials Science and Engineering, awarded in 2016 by the Egypt-Japan University of Science and Technology and Kyoto University, Japan. His doctoral research focused on developing high-performance graphene-based electrodes for optoelectronic and electrochemical applications, supervised by Prof. Ahmed Abd El-Moneim, Prof. Ahmed Fath-Elbab, and Prof. Kazunari Matsuda.

Dr. Hessein’s academic journey includes an M.Sc. in Engineering Physics from Benha University, Egypt, completed in 2013, where he explored the optical characterization of semiconductor nanoparticles for photovoltaic performance. He also holds a B.Sc. in Electrical Power and Electrical Machines, earned in 2006 from Benha University.

With a career spanning academia and research, Dr. Amr Hessein Hassan Ali has held various positions. He is currently serving as an Associate Professor in the Engineering Mathematics and Physics Department at the Faculty of Engineering at Shoubra, Benha University, Egypt, a role he has held since 2022. Prior to this, he was an Assistant Professor in the same department from 2016 to 2022. He also served as a Demonstrator for engineering physics from 2007 to 2013.

Professional Profile:

Education & Qualification:

Ph.D. in Materials Science and Engineering, 2016

  • Materials Science and Engineering Department, Egypt-Japan University of Science and Technology, Egypt.

M.Sc. in Engineering Physics, 2013

  • Engineering Mathematics and Physics Department, Faculty of Engineering at Shoubra, Benha University, Egypt.

B.Sc. in Electrical Power and Electrical Machines, 2006

  • Electrical Engineering Department, Faculty of Engineering at Shoubra, Benha University, Egypt.

Employment:

Amr Hessein Hassan Ali has had a diverse and extensive career in academia and research. Here is a summary of his employment history:

  • 2022-present: Associate Professor, Engineering Mathematics and Physics Department, Faculty of Engineering at Shoubra, Benha University, Egypt.
  • 2021–2022: Adjunct Professor, Materials Science and Engineering, Egypt-Japan University of Science and Technology (E-JUST).
  • 2016–2022: Assistant Professor, Engineering Mathematics and Physics Department, Faculty of Engineering at Shoubra, Benha University, Egypt.
  • 2013–2016: Ph.D. student, Materials Science and Engineering Department, Egypt-Japan University of Science and Technology, Egypt, & Institute of Advanced Energy, Kyoto University, Japan.
  • 2007–2013: Demonstrator for Engineering Physics, Engineering Mathematics and Physics Department, Faculty of Engineering at Shoubra, Benha University, Egypt.

This trajectory showcases his progression from a Demonstrator to an Assistant Professor and now an Associate Professor, highlighting his commitment to both teaching and research throughout his career.

Research Areas:

Amr Hessein Hassan Ali’s research primarily focuses on nanomaterials for energy conversion and storage. His expertise includes working on various aspects of energy-related materials and devices, such as Quantum Dot Sensitized Solar Cells, Thin-film Solar Cells, Perovskite Solar Cells, Graphene, and other carbon-related materials. Additionally, he is involved in the study and development of energy storage devices, particularly in the areas of Supercapacitors and Thermoelectric materials. His research contributions contribute to advancements in sustainable energy technologies and storage solutions.

Publication Top Noted:

Title: High-performance asymmetric supercapacitor based hierarchical NiCo2O4@ carbon nanofibers//Activated multichannel carbon nanofibers

  • Authors: AG El-Deen, MH El-Shafei, A Hessein, AH Hassanin, NM Shaalan, …
  • Journal: Nanotechnology
  • Volume: 31
  • Issue: 36
  • Pages: 365404
  • Year: 2020
  • Citations: 33

Title: Towards high performance flexible planar supercapacitors: In-situ laser scribing doping and reduction of graphene oxide films

  • Authors: A Hamed, A Hessein, A Abd El-Moneim
  • Journal: Applied Surface Science
  • Volume: 551
  • Pages: 149457
  • Year: 2021
  • Citations: 25

Title: One-step fabrication of copper sulfide nanoparticles decorated on graphene sheets as highly stable and efficient counter electrode for CdS-sensitized solar cells

  • Authors: Amr Hessein, Feijiu Wang, Hirokazu Masai, Kazunari Matsuda, Ahmed Abd El …
  • Journal: Japanese Journal of Applied Physics
  • Volume: 55
  • Issue: 11
  • Pages: 112301-1
  • Year: 2016
  • Citations: 21

Title: Improving the stability of CdS quantum dot sensitized solar cell using highly efficient and porous CuS counter electrode

  • Authors: AAEM Amr Hessein, Feijiu Wang, Hirokazu Masai, Kazunari Matsuda
  • Journal: Journal of Renewable and Sustainable Energy
  • Volume: 9
  • Issue: 2
  • Pages: 023504-1
  • Year: 2017
  • Citations: 17

Title: A low voltage, flexible, graphene-based electrothermal heater for wearable electronics and localized heating applications

  • Authors: SAN Tembei, A Hessein, AMRF El-Bab, AA El-Moneim
  • Journal: Materials Today: Proceedings
  • Volume: 33
  • Pages: 1840-1844
  • Year: 2020
  • Citations: 13

Title: Ultrasonic doping and photo-reduction of graphene oxide films for flexible and high-performance electrothermal heaters

  • Authors: SAN Tembei, AMRF El-Bab, A Hessein, A Abd El-Moneim
  • Journal: FlatChem
  • Volume: 24
  • Pages: 100199
  • Year: 2020
  • Citations: 11

Title: A comprehensive study on Cu2SnS3 prepared by sulfurization of Cu–Sn sputtered precursor for thin-film solar cell applications

  • Authors: MS Abdel-Latif, W Magdy, T Tosuke, A Kanai, A Hessein, NM Shaalan, …
  • Journal: Journal of Materials Science: Materials in Electronics
  • Volume: 31
  • Pages: 14577-14590
  • Year: 2020
  • Citations: 11

Title: Developing Cost Effective Graphene Conductive Coating and its Application as Counter Electrode for CdS Quantum Dot Sensitized Solar Cell

  • Authors: AAEM Amr Hessein
  • Conference: the World Congress on New Technologies (NewTech 2015)
  • Year: 2015
  • Citations: 10