Assist. Prof. Dr  Shekha Rai  – Power system – Women Researcher Award

Assist. Prof. Dr  Shekha Rai  - Power system - Women Researcher Award

NIT Rourkela - India 

Author Profile 

GOOGLE SCHOLAR

Early academic pursuits 🎓

Shekha Rai's academic journey began with his schooling at Donbosco High School and Kendriya Vidyalaya ONGC, Jorhat, where he achieved impressive academic results. His passion for electrical engineering led him to pursue a Bachelor of Technology (B.Tech.) in Electrical Engineering from Jorhat Engineering College, where he ranked second in his class with a percentage of 74.10%. This laid the foundation for his future endeavors in power systems. He went on to earn a Doctor of Philosophy (Ph.D.) in Power Systems from the Indian Institute of Technology (IIT) Guwahati, with a focus on "Robust estimation of low-frequency modes for on-line stability monitoring of power systems," under the guidance of Dr. Praveen Tripathy and Dr. Sisir Kumar Nayak. His work at IIT Guwahati earned him a CGPA of 8.83, marking a significant academic achievement in the field of electrical engineering.

Professional endeavors 🏫

Dr. Shekha Rai’s professional career spans several prestigious academic institutions in India. He has served as an Assistant Professor at the Department of Electrical Engineering at NIT Rourkela since March 2020, where he continues to inspire and educate the next generation of engineers. Prior to this, he held assistant professor positions at Jorhat Engineering College and NIT Nagaland, gaining valuable teaching experience. His work across these institutions has made significant contributions to the development of students and research in the field of electrical engineering and power systems.

Contributions and research focus 🔬

Dr. Rai’s research is deeply focused on power systems, particularly in the areas of wide-area monitoring and control, as well as power system dynamics and stability. His doctoral research centered on robust methods for real-time monitoring of power system stability using low-frequency modes. By developing innovative Power system techniques for on-line stability monitoring, he has contributed to improving the reliability and security of power grids. Dr. Rai’s work continues to push the boundaries of power system analysis, contributing to enhanced grid stability and control systems, which are vital in today's increasingly complex energy landscape.

Accolades and recognition 🏅

Dr. Shekha Rai has earned recognition for his outstanding research and teaching in the field of electrical engineering. His academic excellence, evident from his high Power system CGPA during his Ph.D. and his first-class B.Tech. achievements, reflects his commitment to the field. Furthermore, his research contributions have been well-regarded by his peers and have led to collaborations with prominent institutions. His roles as a mentor and educator at top engineering colleges, including NIT Rourkela, NIT Nagaland, and Jorhat Engineering College, have further solidified his position as a respected academic in the field.

Impact and influence 🌍

Dr. Rai’s work has had a significant impact on the power systems domain, particularly in the area of stability and monitoring. His research plays a crucial role in Power system ensuring the safe and efficient operation of electrical grids, especially in large, interconnected systems. His contributions have influenced both academic research and practical applications, particularly in grid management and stability monitoring. Through his innovative techniques, Dr. Rai has helped advance the understanding and control of power systems, with broad implications for national and global energy infrastructure.

Legacy and future contributions 🔮

As a passionate educator and researcher, Dr. Shekha Rai is laying the groundwork for a lasting legacy in the field of power systems. His contributions to the advancement of stability monitoring techniques will continue to shape the future of power system operations and research. Moving forward, he is poised to explore new frontiers in energy systems, particularly in the integration of renewable energy sources and the optimization of grid stability. His future work promises to address the emerging challenges in power systems, making a profound impact on energy efficiency and sustainability for generations to come.

Notable Publications 

  1. Title: Using sparsity to estimate oscillatory mode from ambient data
    Authors: S. Rai, P. Tripathy, S.K. Nayak
    Journal: Sādhanā, 44(4), 90 (2019)
  2. Title: A robust WKNN-TLS-ESPRIT algorithm for identification of electromechanical oscillation modes utilizing WAMS
    Author: S. Rai
    Journal: Sādhanā, 45(1), 265 (2020)
  3. Title: A nonlinear filtering technique along with RD and TLS-ESPRIT for mode identification of ambient data
    Authors: S. Rai, S.K. Nayak, P. Tripathy
    Conference: 2015 Annual IEEE India Conference (INDICON), 1-6 (2015)
  4. Title: Model order estimation for low-frequency oscillations in power systems by an advanced K-mean clustering approach
    Authors: M. Sahoo, J. Sandeep, S. Rai
    Journal: Electric Power Systems Research, 224, 109676 (2023)
  5. Title: A K-Medoids-LSTM Based Technique for Electromechanical Modes Identification for Synchrophasor Applications
    Authors: M. Sahoo, A. Roy, S. Rai
    Conference: 2023 International Conference on Power, Instrumentation, Control and … (2023)

Assoc Prof Dr. Zuhair Alaas – Electrical Engineering – Best Researcher Award

Assoc Prof Dr. Zuhair Alaas - Electrical Engineering - Best Researcher Award

Jazan University - Saudi Arabia

Author Profile

SCOPUS

ORCID

Early academic pursuits 🎓

Zuhair Alaas embarked on his academic journey with a strong foundation in electrical engineering. he earned his bachelor's degree from king fahd university of petroleum and minerals in ksa in 2002. driven by a passion for advancing his knowledge, he pursued a master's degree at the university of newcastle upon tyne in the uk, which he completed in 2007. to further solidify his expertise, he attained a ph.d. in electrical engineering from wayne state university, us, in 2017, focusing on cutting-edge technologies in power electronics and energy systems.

Professional endeavors 🏢

zuhair's professional career is marked by significant roles in academia and the industry. after gaining experience as a lecturer at the technical and vocational training corporation, he served as a power transmission engineer at saudi electric company. his academic journey at jazan university began in 2011, where he progressed from a lecturer to an assistant professor, and eventually to an associate professor. notably, he led the electrical engineering department from february 2019 to april 2023, guiding it through a period of academic excellence and innovation.

Contributions and research focus 🔍

zuhair's research is deeply rooted in the realm of power electronics and renewable energy. he has made significant contributions to the development of ac and dc power converter topologies, multilevel inverters, and battery management systems. his work extends to the Electrical Engineering management of grid-level energy storage systems, machine drives, and the integration of renewable energy sources like photovoltaic systems and wind energy into smart grids. through his research, he has contributed to the advancement of sustainable energy solutions and the optimization of power systems.

Accolades and recognition 🏅

zuhair's expertise and dedication have earned him recognition in the academic and engineering communities. his leadership as the head of the Electrical Engineering electrical engineering department at jazan university was instrumental in fostering a culture of research and innovation. he has been recognized for his contributions to the development of efficient energy systems and his work in integrating renewable energy into existing power grids. his academic and professional achievements have made him a respected figure in the field of electrical engineering.

Impact and influence 🌍

zuhair's work has had a profound impact on the field of electrical engineering, particularly in the areas of power electronics and renewable energy. his research has contributed to the development of more efficient and reliable energy systems, helping to drive the global transition to Electrical Engineering renewable energy sources. his influence extends beyond his research, as he has mentored numerous students and professionals, guiding them toward successful careers in engineering and energy management.

Legacy and future contributions 🔮

zuhair alaas's legacy is characterized by his commitment to advancing the field of electrical engineering through research, teaching, and leadership. his contributions to the development of sustainable energy systems and his dedication to academic excellence have left a lasting impact on the field. as he continues his work at jazan university, his future contributions promise to further enhance the integration of renewable energy into smart grids and the development of advanced power electronics systems, ensuring a sustainable energy future.

Notable Publications

Mr. Bibhudatta Mishra – Electrical Engineering – Best Researcher Award

Mr. Bibhudatta Mishra - Electrical Engineering - Best Researcher Award

NIT Rourkela - India

Professional Profile

GOOGLE SCHOLAR

EARLY ACADEMIC PURSUITS 🎓

Bibhudatta Mishra's academic journey began with a B.Tech. in Electrical Engineering from Biju Pattnaik University of Technology, Rourkela, where he laid a solid foundation in electrical systems. He further pursued an M.Tech. in Power System Engineering at Veer Surendra Sai University of Technology, Burla, excelling in his studies with a CGPA of 9.04. His quest for deeper knowledge and expertise led him to the National Institute of Technology, Rourkela, where he earned a Ph.D. in Electrical Engineering with a commendable CGPA of 8.39, focusing on decentralized control strategies for parallel operating inverters in AC microgrids.

PROFESSIONAL ENDEAVORS 🏢

Bibhudatta's career has spanned both academic and industry settings. He served as an Assistant Professor at Silicon Institute of Technology, Sambalpur, where he was responsible for teaching and administrative duties in the Electrical Engineering department. Prior to this, he held the role of Contractual Lecturer at Veer Surendra Sai University of Technology, Burla, where he taught core subjects to both undergraduate and postgraduate students. His diverse experience highlights his commitment to advancing electrical engineering education and research.

CONTRIBUTIONS AND RESEARCH FOCUS 🔍

Bibhudatta’s research primarily focuses on control strategies and optimization in power systems. His doctoral research developed a decentralized control strategy for parallel operating inverters in AC microgrids, addressing critical challenges in power sharing and system Electrical Engineering stability. His M.Tech. project involved a comparative study of tuning algorithms for thermal systems, and his B.Tech. project covered the design of distribution transformers. His work continues to push boundaries in power systems and energy management.

ACCREDITATIONS AND RECOGNITION 🏅

Throughout his career, Bibhudatta has received several accolades for his contributions to the field. Notably, he was awarded Best Paper at the IEMRE-2022 conference for his research on droop-based decentralized control strategies. He has also been a recipient of MHRD scholarships for both his M.Tech. and Ph.D. studies. His qualifications are further evidenced by his success in multiple GATE exams, reflecting his deep Electrical Engineering understanding of electrical engineering principles.

IMPACT AND INFLUENCE 🌟

Bibhudatta’s work has a significant impact on the field of electrical engineering, particularly in power systems and microgrid management. His research into decentralized control and optimization techniques provides practical solutions for improving the efficiency and reliability of power systems. His publications in respected journals and conferences contribute valuable knowledge to the academic and professional community, Electrical Engineering influencing ongoing developments in energy management and control strategies.

LEGACY AND FUTURE CONTRIBUTIONS 🔮

Bibhudatta Mishra is set to leave a lasting legacy in the field of electrical engineering through his innovative research and dedication to education. His future work aims to further advance control strategies and optimization techniques, addressing emerging challenges in power systems and sustainable energy solutions. His commitment to both research and teaching ensures that his contributions will continue to shape the field and inspire future engineers.

NOTABLE PUBLICATIONS

Geometrical interpretation of incremental conductance mppt algorithm for a stand-alone photovoltaic system 2021

A Modified Droop-based Decentralized Control Strategy for Accurate Power Sharing in a PV-based Islanded AC Microgrid 2024

Enhancement of Power Sharing in an Islanded AC Microgrid Using Modified Reverse Droop Control Strategy 2023

A Modified Droop-based Decentralized Control Strategy for an Islanded AC Microgrid  2023

A Simple and Novel Tuning Technique for Load Frequency Control in a Multi-Area Microgrid System  2022

Dr. Shiqi Zhang – Electrical engineering – Young Scientist Award

Dr. Shiqi Zhang - Electrical engineering - Young Scientist Award

Yanshan University - China

Professional Profile

SCOPUS

ORCID

Early Academic Pursuits

Shiqi Zhang's academic journey began with a solid foundation in electrical engineering. After completing his Bachelor's degree, he pursued a Master's degree in Electrical Engineering at Curtin University. His master's thesis focused on enhancing energy systems, which set the stage for his future research. Currently, as a Ph.D. candidate at Yanshan University, Zhang continues to specialize in hydrogen converters and system energy management, pushing the boundaries of renewable energy technologies.

Professional Endeavors

Throughout his academic career, Zhang has been deeply involved in innovative research projects. His work focuses on integrating renewable energy sources with hydrogen production systems and developing high-efficiency power converters for electrolysis. He has been proactive in applying for national patents, with 27 applications to his name, and has authored 9 SCI/EI-indexed journal articles. Zhang's contributions extend beyond academia, involving significant consultancy and industry-sponsored projects, notably the National Natural Science Foundation of China project on medium-voltage photovoltaic grid-connected inverters and the National Key R&D Program of China on new energy technologies.

Contributions and Research Focus

Zhang's research is centered on the design and optimization of power converters for renewable energy applications. He has developed dynamic models and control strategies for hydrogen production technologies, contributing significantly to green energy solutions. His work aims to enhance the efficiency and stability of Electrical engineering renewable energy systems, particularly through innovative power converters and energy management methods. Zhang's research has resulted in several patents and publications, demonstrating his commitment to advancing renewable energy technologies.

Accolades and Recognition

Shiqi Zhang's innovative work has earned him prestigious awards and recognition. He has received two Gold Awards at the China International "Internet+" Innovation and Entrepreneurship Competition, highlighting his contributions to renewable energy research. His patents and publications reflect his significant impact on the Electrical engineering field, showcasing his dedication to developing cutting-edge technologies that support global efforts toward carbon neutrality.

Impact and Influence

Zhang's research has had a considerable impact on the field of renewable energy. His contributions to the development of high-efficiency power converters and energy management systems have advanced the understanding and application of hydrogen production technologies. By addressing key issues in renewable energy integration, Zhang's work supports the transition to sustainable energy practices. His research not only propels technological advancements but also contributes to Electrical engineering environmental sustainability.

Legacy and Future Contributions

As Shiqi Zhang continues his research and professional endeavors, his future contributions are expected to further influence the field of renewable energy. His ongoing projects and collaborations aim to develop new technologies and strategies for efficient energy management and hydrogen production. Zhang's work will likely continue to inspire and guide future researchers, contributing to the global efforts in achieving sustainable energy solutions and carbon neutrality. His legacy in the field of electrical engineering and renewable energy is marked by his dedication to innovation, research excellence, and environmental sustainability.

NOTABLE PUBLICATIONS