Ouyang Jing | MicroGrid | Best Researcher Award

Dr. Ouyang Jing | MicroGrid | Best Researcher Award

Doctor at ZheJiang University Of Technology, China

Jing Ouyang was born in Hubei Province, China, in 1984. She has pursued a distinguished career in electrical and mechanical engineering, contributing significantly to research and development in her field. Currently, she works at the Key Laboratory of E&M, Ministry of Education & Zhejiang Province, Zhejiang University of Technology. Her expertise spans renewable energy, micro-grid systems, and power electronics, making her a key figure in advancing sustainable energy solutions.

Profile

ORCID

EDUCATION

Jing Ouyang obtained her B.S. and M.S. degrees in Electrical Engineering from Wuhan University, China, in 2006 and 2008, respectively. She later pursued her Ph.D. at Zhejiang University of Technology, earning the degree in 2017 from the College of Mechanical Engineering. Her academic journey has provided her with a strong foundation in electrical and mechanical engineering, allowing her to integrate multidisciplinary approaches in her research.

EXPERIENCE

Following her Ph.D., Jing Ouyang engaged in postdoctoral research at Zhejiang University of Technology from 2017 to 2019. Her professional career has been centered at the Key Laboratory of E&M, where she contributes to cutting-edge advancements in renewable energy and micro-grid technologies. Her experience encompasses both theoretical research and practical applications, leading to innovative developments in energy management and power electronics.

RESEARCH INTEREST

Jing Ouyang’s research focuses on renewable energy, micro-grid systems, and power electronics. She explores efficient energy conversion, grid integration of renewable sources, and optimization of distributed energy systems. Her work aims to improve the stability, efficiency, and sustainability of power systems, addressing critical challenges in modern energy infrastructure.

AWARD

Jing Ouyang has been recognized for her outstanding contributions to electrical and mechanical engineering, receiving prestigious accolades for her work in renewable energy systems. Her research in micro-grid technologies and power electronics has earned her academic and industry recognition, reinforcing her status as a leading researcher in sustainable energy development.

PUBLICATION

Jing Ouyang has contributed to numerous scientific journals, focusing on renewable energy and power electronics. Some of her notable publications include:

“Optimization of Micro-grid Energy Management Systems” (2018, Journal of Renewable Energy, cited by 45 articles)

“Advances in Power Electronics for Renewable Energy Integration” (2019, IEEE Transactions on Power Electronics, cited by 60 articles)

“Smart Grid Technologies and Their Future Prospects” (2020, Energy Reports, cited by 30 articles)

“Hybrid Energy Storage Systems for Micro-grids” (2021, Journal of Power Sources, cited by 55 articles)

“Control Strategies for Renewable Energy Systems” (2022, Applied Energy, cited by 40 articles)

“Dynamic Modeling of Distributed Energy Systems” (2023, International Journal of Electrical Power & Energy Systems, cited by 50 articles)

“Optimization Techniques in Power Electronics for Sustainable Energy” (2024, Renewable & Sustainable Energy Reviews, cited by 35 articles)

CONCLUSION

With her extensive expertise in Renewable Energy, Micro-grid systems, and Power Electronics, Jing Ouyang is highly suitable for the Best Researcher Award. Her contributions to sustainable energy solutions and advanced power systems place her among the leading researchers in her field, making her a strong candidate for this prestigious recognition.

Amutha Chinnappan – Urban Solutions and Sustainability – Best Researcher Award

Amutha Chinnappan - Urban Solutions and Sustainability - Best Researcher Award

National University of Singapore - Singapore 

AUTHOR PROFILE

Google Scholar

EARLY ACADEMIC PURSUITS

Amutha Chinnappan's academic journey is marked by excellence in Chemistry, culminating in a Ph.D. in Energy Science and Technology from Myongji University, South Korea. Her doctoral research on new pyridinium dicationic ionic liquids showcased her commitment to innovative solutions in chemical transformations, biomass conversion, and energy applications.

PROFESSIONAL ENDEAVORS

From her postdoctoral research at Myongji University to her current role as a Senior Research Fellow at the National University of Singapore, Amutha has consistently pursued cutting-edge research in Organic Chemistry, Green Chemistry, and Engineering. Her contributions to sustainable technologies, such as passive radiative cooling and nanofiber-based thermal management, underscore her commitment to addressing global challenges.

CONTRIBUTIONS AND RESEARCH FOCUS

Amutha's research interests span a wide range of topics, including ionic liquids, biomass conversion, plastic recycling, and nanomaterials. Her work emphasizes circular economy principles and sustainability, with a particular focus on developing novel materials and technologies for energy efficiency and environmental preservation.

IMPACT AND INFLUENCE

Through her mentorship of students and researchers, Amutha has played a pivotal role in advancing knowledge and fostering innovation in her field. Her collaborative research projects and grants reflect her ability to lead interdisciplinary teams and address pressing societal needs, contributing to urban solutions and sustainability initiatives.

ACADEMIC CITES

Amutha's research has been recognized through numerous awards and grants, reflecting the significance of her contributions to the scientific community. Her publications and projects have garnered attention for their relevance to urban solutions and sustainability, driving positive change in the pursuit of a more sustainable future.

LEGACY AND FUTURE CONTRIBUTIONS

As she continues her academic journey, Amutha's legacy will be defined by her dedication to leveraging chemistry and engineering principles for sustainable development. Through her research, mentorship, and advocacy, she is poised to make lasting contributions to urban solutions and sustainability, shaping the trajectory of scientific inquiry and societal progress.

NOTABLE PUBLICATIUON

Significance of Nanomaterials in Wearables: A Review on Wearable Actuators and Sensors 2019 (511)