Mr. Zehui Li – Control and optimization of thermostatically controlled loads – Best Researcher Award

Mr. Zehui Li - Control and optimization of thermostatically controlled loads - Best Researcher Award

China Energy Engineering Group Shanxi Electric Power Engineering CO., LTD  -  China

AUTHOR PROFILE

ORCID

EARLY ACADEMIC PURSUITS

Zehui Li embarked on his academic journey with a Bachelor of Computer Science from Jiangxi University of Science and Technology in 2017, followed by a Master's degree in Electrical Engineering from Yanshan University in 2022. These foundational academic pursuits provided him with a solid background in electrical engineering and automation, setting the stage for his future endeavors in the field.

PROFESSIONAL ENDEAVORS

Since 2022, Zehui Li has served as an Electrical Engineer at China Energy Engineering Group Shanxi Electric Power Engineering CO., LTD., where he specializes in electrical secondary design within the power grid department. His role involves crucial responsibilities in the design and optimization of electrical systems, contributing to the efficient functioning of power infrastructure.

CONTRIBUTIONS AND RESEARCH FOCUS ON CONTROL AND OPTIMIZATION OF THERMOSTATICALLY CONTROLLED LOADS

Zehui Li's primary focus lies in the control and optimization of thermostatically controlled loads within the realm of electrical engineering. His academic achievements include several notable publications in reputable journals such as Expert Systems With Applications and Electric Power Systems Research, addressing key aspects of energy priority control strategies and optimal dispatch methods for thermostatically controlled loads.

IMPACT AND INFLUENCE

Through his research and publications, Zehui Li has contributed valuable insights to the field of electrical engineering, particularly in the context of smart grid technologies. His work has the potential to influence the development of more efficient and sustainable energy systems, thereby impacting industries and communities reliant on electrical power.

ACADEMIC CITES

Zehui Li's research contributions are evident through his publications, which have garnered citations and recognition within the academic community. His papers, indexed in reputable databases such as Scopus, demonstrate his scholarly impact and the relevance of his research findings in the field of electrical engineering.

LEGACY AND FUTURE CONTRIBUTIONS

Despite his relatively early career stage, Zehui Li has already made significant contributions to his field through his academic achievements and professional endeavors. His dedication to research and development in electrical engineering positions him as a promising scholar with the potential for further impactful contributions in the future.

NOTABLE PUBLICATIONS

Energy priority control strategy and reward allocation mechanism for thermostatically  2022

Dr LEI BO – Power station – Best Researcher Award

Dr LEI BO - Power station - Best Researcher Award

China University of South China - China

AUTHOR PROFILE

SCOPUS

ORCID

EARLY ACADEMIC PURSUITS

Bo Lei's academic journey commenced with a Bachelor of Science degree in Geological Engineering from the China University of Mining & Technology. He later pursued a Ph.D. in Geology of Coalbed Methane at the same institution under the supervision of Professor Yong Qin. Lei's early academic pursuits laid the groundwork for his subsequent Power station contributions to the field of geosciences.

PROFESSIONAL ENDEAVORS

Following the completion of his doctoral studies, Bo Lei embarked on a career as a Lecturer at the School of Resource, Power station Environment and Safety Engineering at the University of South China. He also undertook a visitor position at the Institut de Physique du Globe de Paris, Université Paris Cité, from 2021 to 2022. Lei's professional endeavors have spanned teaching, research, and collaborative engagements with international institutions.

CONTRIBUTIONS AND RESEARCH FOCUS ON POWER STATION

Bo Lei's research has primarily focused on radon exhalation, coalbed methane, and geological controls of gas content in coal reservoirs. His publications encompass a wide range of topics, including the identification of customer groups for demand-side management services, energy decision frameworks, and the estimation of radon flux data in China. Lei's research contributions have significantly advanced understanding in the fields of energy management, environmental science, and geological engineering.

IMPACT AND INFLUENCE

Through his publications and research activities, Bo Lei has made a substantial impact on the academic community and industry practitioners. His work on radon exhalation and coalbed methane has contributed to the development of sustainable energy strategies and improved understanding of geological phenomena. Lei's collaborations with international scholars and institutions have facilitated knowledge exchange and enhanced global awareness of key environmental and energy-related challenges.

ACADEMIC CITES

Bo Lei's research has been widely cited in academic literature and conference proceedings, reflecting the relevance and impact of his contributions. His publications have served as valuable resources for scholars and researchers in fields such as energy exploration, environmental science, Power station and geological engineering. Lei's citation record underscores the significance of his work in advancing scientific knowledge and informing policy discussions.

LEGACY AND FUTURE CONTRIBUTIONS

As Bo Lei continues to pursue his academic and professional endeavors, his legacy is expected to endure through his ongoing commitment to research excellence and innovation. His future contributions are likely to further enhance understanding of geological processes, Power station, energy management strategies, and environmental sustainability. Lei's interdisciplinary approach and collaborative efforts are poised to drive positive change in academia, industry, and policymaking spheres.

NOTABLE PUBLICATIONS

A comprehensive review of radioactive pollution treatment of uranium mill tailings   2023(2)

Comparison of radon adsorption properties under dynamic radon exhalation   2023(1)

An energy demand-side management and net metering decision framework   2023(4)

Overview and large-scale representative estimate of radon-222 flux data in China   2023(3)

Analysis of equivalent thickness of geological media for lab-scale study of radon exhalation   2022(4)