Hasi Rani Barai | Renewable Energy | Innovative Research Award

Innovative Research Award

Hasi Rani Barai
Affiliation Yeungnam University
Country South Korea
Scopus ID 42461013800
Documents 83
Citations 1,608 Citations by 1,292 documents
h-index 25
Subject Area Renewable Energy
Event Superior Engineering Research Awards
ORCID 0000-0001-5915-8425

Hasi Rani Barai
Yeungnam University, South Korea

The Innovative Research Award profile recognizes the scholarly achievements and research contributions of Hasi Rani Barai, a researcher affiliated with Yeungnam University, South Korea. Her academic portfolio reflects sustained contributions to renewable energy systems, energy optimization, sustainable power technologies, and interdisciplinary engineering research. The profile highlights publication productivity, citation influence, and scholarly impact indicators that support consideration within the framework of the Superior Engineering Research Awards.[1][2]

Abstract

This academic recognition article summarizes the research achievements, scholarly influence, and scientific contributions of Hasi Rani Barai in the field of renewable energy. Through a documented record of peer-reviewed publications, substantial citation performance, and interdisciplinary engineering investigations, the researcher has contributed to advancing knowledge in sustainable energy systems and related technological applications. The profile is prepared in a neutral encyclopedic style suitable for award evaluation and academic reference purposes.[1][3]

Keywords

Renewable Energy, Sustainable Power Systems, Energy Engineering, Smart Grid Technologies, Clean Energy Research, Engineering Innovation, Energy Optimization, Academic Impact, Citation Analysis, Research Excellence.

Introduction

Renewable energy research plays an increasingly important role in addressing global sustainability challenges and supporting the transition toward low-carbon energy infrastructures. Researchers working within this field contribute to technological innovation, energy efficiency improvements, and the integration of advanced engineering solutions. Hasi Rani Barai’s academic record demonstrates engagement with these objectives through scholarly publications and research activities associated with renewable energy technologies and engineering applications.[2][4]

Research Profile

Hasi Rani Barai is affiliated with Yeungnam University in South Korea and has established a publication portfolio indexed within international scholarly databases. The research profile includes 83 indexed documents, an h-index of 25, and more than 1,600 citations received from over 1,200 citing documents. These indicators reflect scholarly visibility and the dissemination of research outcomes across the scientific community.[1]

The documented research activity spans areas associated with renewable energy systems, power engineering, sustainability-oriented technologies, and interdisciplinary engineering methodologies. Such work contributes to both theoretical understanding and practical implementation within modern energy infrastructures.[3][4]

Research Contributions

The research contributions associated with Hasi Rani Barai demonstrate engagement with challenges related to sustainable energy production, energy management, and system optimization. Published work has contributed to discussions concerning renewable resource utilization, energy efficiency enhancement, smart energy infrastructure, and engineering solutions that support sustainable development objectives.[3]

Academic contributions have also supported knowledge exchange through peer-reviewed publications, collaborative research initiatives, and dissemination of findings within international scholarly communities. Such activities are important components of research advancement and innovation within engineering disciplines.[5]

Publications

The publication record includes journal articles, conference contributions, and scholarly outputs addressing renewable energy technologies and engineering applications. The body of work demonstrates sustained academic productivity and engagement with internationally recognized publication venues. Citation activity indicates that several contributions have been referenced by researchers working in related scientific and engineering fields.[1][5]

Research Impact

Research impact may be evaluated using publication productivity, citation performance, scholarly influence, and evidence of knowledge dissemination. The available metrics associated with this profile indicate meaningful engagement within the scientific literature and recognition by fellow researchers. Citation-based indicators provide measurable evidence of the visibility and utilization of published research outputs.[1][2]

The combination of publication volume, citation activity, and an established h-index suggests sustained academic influence across renewable energy and engineering-related research domains.[1]

Award Suitability

Based on available scholarly indicators, Hasi Rani Barai demonstrates characteristics commonly associated with candidates considered for research recognition programs. These include a sustained publication record, measurable citation impact, contributions to renewable energy research, and evidence of scholarly engagement at an international level. Such attributes align with evaluation criteria frequently used in engineering and scientific award assessments.[1][5]

Within the context of the Superior Engineering Research Awards, the profile presents a documented record of academic achievement that supports consideration under categories emphasizing innovation, research excellence, and scientific contribution.

Conclusion

Hasi Rani Barai’s academic profile reflects sustained scholarly productivity and measurable research influence within renewable energy and engineering disciplines. The documented publication record, citation metrics, and research contributions collectively support recognition as a researcher contributing to the advancement of sustainable energy technologies and engineering innovation. The profile serves as an encyclopedic summary suitable for academic recognition and award evaluation contexts.[1]

References

    1. Elsevier. (n.d.). Scopus Author Details: Hasi Rani Barai, Author ID 42461013800. Scopus Author Profile.
      https://www.scopus.com/authid/detail.uri?authorId=42461013800
    2. ORCID. (n.d.). ORCID Record for Hasi Rani Barai.
      https://orcid.org/0000-0001-5915-8425
    3. Lund, H., et al. (2017). Smart energy and renewable energy systems integration. Renewable and Sustainable Energy Reviews.
    4. International Energy Agency. (2023). Renewable Energy Market Update.
      https://www.iea.org/reports/renewable-energy-market-update
    5. United Nations. (2015). Transforming our World: The 2030 Agenda for Sustainable Development.
      https://sdgs.un.org/2030agenda

Assist. Prof. Dr. Mostafa Wageh lotfy Mohamed | Renewable Energy | Best Researcher Award

Assist. Prof. Dr. Mostafa Wageh lotfy Mohamed | Renewable Energy | Best Researcher Award

Assist. Prof. Dr. Mostafa Wageh lotfy Mohamed | Beni-Suef University | Egypt

Dr. Mostafa Wageh Lotfy Mohamed is an Assistant Professor in the Department of Process Control Technology at the Faculty of Technology and Education, Beni-Suef University, Egypt. He earned his PhD in Electrical Power and Machines from Beni-Suef University, where his doctoral research focused on the control of Split-Source Inverters for renewable energy applications. His academic foundation also includes an M.Sc. degree on the performance analysis of high-gain DC-DC converters for distributed generation systems, and a B.Sc. in Automatic Control with an excellent grade. Dr. Mohamed has extensive expertise in power electronics, control systems, and renewable energy technologies, particularly in DC/DC and DC/AC converters, transformer-less Split-Source Inverters, and intelligent control strategies for energy systems. He has successfully led multiple funded research projects, including the design and implementation of three-phase Split-Source Inverters for renewable energy applications and an innovative 3D-printed small wind turbine for low-speed regions. His scholarly impact is reflected in 75 citations , an h-index of 5, and an i10-index of 4. Through his research and innovation, Dr. Mohamed continues to contribute to advancing renewable energy integration, sustainable system design, and technological progress in Egypt and globally.

Profile: Google Scholar

Featured Publications

  1. Lotfy, M. W., Dabour, S. M., Mostafa, R. M., Almakhles, D. J., & Elmorshedy, M. F. (2023). Modeling and control of a voltage-lift cell split-source inverter with MPPT for photovoltaic systems. IEEE Access.

  2. Shehata, E. G., Thomas, J., Brisha, A. M., & Wageh, M. (2017). Design and analysis of a quasi Y-source impedance network DC–DC converter. Proceedings of the 2017 Nineteenth International Middle East Power Systems Conference (MEPCON), 1-6. IEEE.

  3. Wageh, M., Dabour, S. M., & Mostafa, R. M. (2021). A high gain split-source inverter with reduced input current ripple. Proceedings of the 2021 22nd International Middle East Power Systems Conference (MEPCON), 383-388. IEEE.

  4. Wageh, M., Dabour, S. M., Mostafa, R. M., & Ghalib, M. A. (2021). Space vector PWM of three-phase inverter with MPPT for photovoltaic system. Australian Journal of Electrical and Electronics Engineering, 18(4), 310-318.

  5. Wageh, M., Dabour, S. M., & Mostafa, R. M. (2022). A new four-switch split-source boosting inverter: Analysis and modulation. Proceedings of the 2022 23rd International Middle East Power Systems Conference (MEPCON), 1-7. IEEE.

  6. Ali, M. M., Elmorshedy, M. F., Gabr, M. A., Ramadan, H. S., & Lotfy, M. W. (2023). An enhanced finite-set model predictive control based super twisting sliding mode speed controller for linear metro applications. Proceedings of the 2023 24th International Middle East Power System Conference (MEPCON), 1-6. IEEE.