Zelong Lu | Electrical Engineering | Innovative Research Award

 

Innovative Research Award

Zelong Lu
Zhejiang University
                             Zelong Lu
Affiliation Zhejiang University
Country China
Scopus ID 57215664322
Documents 21
Citations 417
h-index 10
Subject Area Electrical Engineering
Event World Green Energy Awards
ORCID 0000-0002-1896-1008

The Innovative Research Award recognizes scholarly achievements that demonstrate scientific originality, technological advancement, and measurable academic influence. Zelong Lu of Zhejiang University has contributed to electrical engineering through research addressing modern energy technologies, power electronics, and sustainable engineering applications. His publication record, citation impact, and research visibility indicate consistent engagement with internationally recognized scientific activities.[1]

Abstract

Zelong Lu is an electrical engineering researcher affiliated with Zhejiang University whose work focuses on advanced electrical systems, power electronics, and sustainable energy technologies. His scholarly portfolio includes twenty-one indexed publications supported by more than four hundred citations and a solid h-index reflecting sustained research influence. His investigations contribute to improved energy efficiency, intelligent electrical infrastructure, and practical engineering innovation. Through collaboration, scientific publication, and technological development, his research supports progress toward cleaner energy systems while strengthening academic understanding of emerging electrical engineering challenges and their practical industrial applications worldwide.[1]

Keywords

Electrical Engineering, Power Electronics, Sustainable Energy, Smart Grid, Green Technology, Energy Systems, Engineering Innovation, Renewable Energy, Scientific Research, Electrical Infrastructure.

Introduction

Electrical engineering research continues to support the global transition toward sustainable energy infrastructure through technological innovation and interdisciplinary collaboration. Researchers developing efficient electrical systems contribute to industrial competitiveness, environmental sustainability, and scientific advancement while addressing increasingly complex energy demands across modern societies.[1]

Research Profile

Zelong Lu has established a research profile characterized by publications in electrical engineering, international scientific visibility, and measurable citation performance. His affiliation with Zhejiang University supports collaborative research activities that contribute to technological innovation and academic knowledge within advanced engineering disciplines.[2]

Research Contributions

His research contributes to improved electrical systems, efficient power conversion technologies, and sustainable engineering practices through analytical investigation and practical implementation. These contributions enhance understanding of modern energy technologies while supporting innovation relevant to future electrical infrastructure and renewable energy integration.[2]

Publications

The researcher has authored twenty-one indexed scholarly publications that collectively demonstrate consistent scientific productivity and international dissemination. Citation performance indicates that these publications have been referenced by the research community, reflecting academic relevance and continuing influence within electrical engineering.[5]

Research Impact

Research impact is demonstrated through publication quality, citation performance, and continued academic engagement within the engineering community. His citation record and h-index indicate sustained recognition, supporting the significance of his scientific contributions in advancing electrical engineering research.[4]

Award Suitability

The Innovative Research Award aligns with achievements demonstrating originality, scientific quality, measurable impact, and continued research excellence. Zelong Lu’s academic record, engineering research contributions, publication profile, and international visibility collectively support consideration for recognition through the World Green Energy Awards.[3]

Conclusion

Zelong Lu represents an active contributor to electrical engineering research through scholarly publication, technological innovation, and measurable academic influence. His work reflects continued dedication to sustainable engineering development and aligns with internationally recognized standards of research excellence and professional achievement.[3]

References

  1. Scopus Author Profile. Zelong Lu. Available at:
    https://www.scopus.com/pages/authors/57215664322.
  2. ORCID. Zelong Lu Research Profile:
    https://orcid.org/0000-0002-1896-1008.
  3. Ma, Q., Liu, C., Huang, K., Zou, Q., Lu, Z., Liu, X., Chen, B., Wang, J., & Li, Z. (2025). Deep projected gradient network to accelerate low-carbon economic dispatch considering energy storage. Energies, 18(13), 3457.
    https://doi.org/10.3390/pr14152522
  4. Chen, X., Wang, X., Shahidehpour, M., Affolabi, L., Lu, Z., & Li, K. (2024). Distributed peer-to-peer coordination of hierarchical three-phase energy transactions among electric vehicle charging stations in constrained power distribution and urban transportation networks. IEEE Transactions on Transportation Electrification, 10(2), 4407–4420. https://doi.org/10.1109/TTE.2023.3315398
  5. Lu, Z., Wang, J., Shahidehpour, M., Bai, L., Xiao, Y., & Li, H. (2024). Cooperative operation of distributed energy resources and thermal power plant with a carbon-capture-utilization-and-storage system. IEEE Transactions on Power Systems, 39(1), 1825–1838.
    https://doi.org/10.1109/TPWRS.2023.3253809

 

Amira Haddouk | Wireless Power Transfer | Best Academic Researcher Award

Best Academic Researcher Award

Amira Haddouk
University of Tunis, Tunisia

Amira Haddouk
Affiliation University of Tunis
Country Tunisia
Scopus ID 18634101800
Documents 14
Citations 37
h-index 4
Subject Area Wireless Power Transfer
Event World Green Energy Awards
ORCID 0000-0001-5940-7735

Amira Haddouk is an Associate Professor in Electrical Engineering at the University of Tunis whose work focuses on smart sensors, embedded systems, energy measurement technologies, and wireless power transfer applications. Her academic activities combine industrial instrumentation, intelligent monitoring systems, and renewable energy technologies. Through publications, conference contributions, and engineering research, she has developed practical solutions supporting efficient energy management and advanced sensing systems.[1]

Abstract

This article presents an overview of the academic profile of Amira Haddouk and highlights her contributions to electrical engineering, smart sensing technologies, and wireless energy transfer systems. Her work demonstrates an interdisciplinary approach integrating measurement science, embedded electronics, and renewable energy applications. These achievements provide a foundation for consideration within academic recognition programs and research excellence initiatives.[2]

Keywords

Wireless Power Transfer, Smart Sensors, Embedded Systems, Energy Measurement, Renewable Energy, Industrial Instrumentation, Electrical Engineering, Intelligent Monitoring Systems.

Introduction

Research in modern electrical engineering increasingly requires integration between sensing technologies, communication systems, and energy-efficient design. Amira Haddouk has contributed to these areas through studies addressing intelligent energy monitoring, smart metering platforms, and advanced measurement methodologies. Her scholarly activities reflect a commitment to practical engineering solutions supported by scientific investigation and experimental validation.[3]

Research Profile

As an Associate Professor, Haddouk has developed expertise in smart sensors, embedded platforms, electrical measurement systems, and energy management technologies. Her academic background includes doctoral research in electrical engineering and continued work in renewable energy applications. Current investigations include wireless power transfer systems capable of supporting sensor networks operating in inaccessible environments.[1]

Research Contributions

Her contributions include the development of smart energy meters, greenhouse monitoring systems, thermal energy management models, and power measurement techniques. These studies have addressed both theoretical and practical challenges associated with energy efficiency and intelligent control. The research outcomes support sustainable engineering practices and demonstrate relevance to industrial and environmental applications.[4]

Publications

Amira Haddouk has authored and co-authored publications covering wireless power transfer, smart energy metering, intelligent greenhouse control, electrical measurement systems, and sustainable energy technologies. Her publications appear in peer-reviewed journals and international conference proceedings. The body of work demonstrates continuous engagement with emerging engineering challenges and practical technological innovation.[2]

Research Impact

The measurable research impact includes citations, international collaborations, and scholarly dissemination through recognized publication channels. Her work contributes to the advancement of sustainable energy systems and intelligent instrumentation technologies. By connecting engineering theory with real-world implementation, the research supports academic and industrial communities alike.[5]

Award Suitability

The academic record, research productivity, and specialization in wireless power transfer and intelligent energy systems support consideration for the Best Academic Researcher Award. Her portfolio demonstrates sustained scholarly activity, publication output, and practical engineering relevance. These characteristics align with the objectives commonly associated with international research recognition programs.

Conclusion

Amira Haddouk has established a research profile centered on innovation in electrical engineering, energy monitoring, and wireless power technologies. Her scholarly achievements reflect continuous engagement with contemporary engineering challenges. The combination of academic leadership, publication activity, and applied research strengthens her profile within international research communities.

References

  1. Chebbi, A., Haddouk, A., Monteiro, V., Afonso, J. L., & Mechergui, H. (2025). Design and implementation of a resonant inductive wireless power transfer system powered by a Class D amplifier for smart sensors in inaccessible environments. Electronics, 15(1), Article 33.
    https://doi.org/10.3390/electronics15010033
  2. Haddouk, A., & Mechergui, H. (2024). Wireless energy transfer for powering smart sensors. In Proceedings of the International Conference on Control, Decision and Information Technologies (CoDIT). IEEE.
    https://doi.org/10.1109/CODIT62066.2024.10708446
  3. Haddouk, A., Tanazafti, A., & Mechergui, H. (2023). Development of a smart energy meter for electrical energy consumption and power. In Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering (LNICST). Springer.
    https://doi.org/10.1007/978-3-031-33979-0_7
  4. Haddouk, A., Khlifi, K., Monteiro, V., Afonso, J. L., & Mechergui, H. (2021). Power losses reduction in a variable linear power supply using the LM317 voltage regulator. ISA Transactions, 116, 234–244.
    https://doi.org/10.1016/j.isatra.2020.12.004
  5. Khlifi, K., Haddouk, A., Ayari, A., & Mechergui, H. (2018). Measurement of active power, electrical energy, and TRMS voltage and current using the dual slope conversion technique. Turkish Journal of Electrical Engineering & Computer Sciences, 26(2), 1024–1038.
    https://doi.org/10.3906/ELK-1704-131