Lei Yang | Energy Big Data Analytics | Best Researcher Award

Mr. Lei Yang | Energy Big Data Analytics | Best Researcher Award

Mr. Lei Yang, College of Business Foreign Languages, Shenzhen Polytechnic University, China

Yang Lei, born in September 1988, is a distinguished researcher and educator specializing in big data analytics, artificial intelligence, and cybersecurity within the energy sector. With a robust academic foundation and extensive industry experience, he has significantly contributed to the development of intelligent systems for healthcare, finance, and smart infrastructure. Currently serving as a full-time computer science lecturer at Shenzhen Polytechnic University, Yang Lei is dedicated to advancing research in data mining and deep learning, aiming to address complex challenges in modern energy systems.

🎓 Education

Yang Lei’s academic journey began with a Bachelor of Science in Applied Mathematics from Hunan University (2010–2014), where he developed a strong analytical foundation. He further pursued a Master’s degree in Computer Technology at the same institution (2014–2016), focusing on the intersection of computational methods and real-world applications. This combination of mathematical rigor and technological proficiency has been instrumental in his multidisciplinary research endeavors.

💼 Professional Experience

Yang Lei’s professional career encompasses roles that bridge academia and industry. At Shenzhen Polytechnic University (2022–present), he imparts knowledge in data structures, big data, cloud computing, and Python programming. Previously, as a Big Data Engineer at Shenzhen Hualang Education Investment Co., Ltd. (2021–2022), he analyzed educational data to identify investment opportunities. His tenure at Shenzhen Medical Information Center (2019–2021) involved constructing a medical big data platform, while at GF Securities (2017–2019), he developed quantitative trading strategies. Earlier, at Guangzhou Unicom (2016–2017), he managed cloud platform development and product operations.

🔬 Research Interests

Yang Lei’s research interests lie at the confluence of data mining, deep learning, and cybersecurity, particularly within energy systems. He focuses on developing robust algorithms to enhance the resilience of smart grids and renewable energy infrastructures against cyber threats. His work often involves leveraging machine learning techniques to predict and mitigate risks associated with false data injection attacks, aiming to ensure the stability and security of modern energy networks.

🏆 Awards and Recognitions

Yang Lei’s contributions have been recognized through various grants and projects. Notably, he received funding from the Special Foreign Languages Research Project of the 2023 Annual Plan for Guangdong Provincial Philosophical and Social Sciences Program (GD23WZXC02-17), the Shenzhen Philosophy and Social Science Planning Project for 2022 (SZ2022D057), and research and teaching projects at Shenzhen Polytechnic University (7025310580). These accolades underscore his commitment to advancing research in data analytics and cybersecurity.

📚 Publications

Adversarial False Data Injection Attacks on Deep Learning-Based Short-Term Wind Speed Forecasting.

Cybersecurity Challenges in PV-Hydrogen Transport Networks: Leveraging Recursive Neural Networks for Resilient Operation.

Shilong Huang | UHV Power Line | Industry Innovator Award

Dr. Shilong Huang – UHV Power Line – Industry Innovator Award

North China Electric Power University | China

      Profiles

Orcid

scopus

📍Current Position

Dr. Huang Shilong currently serves as the Manager of the Science and Technology Department at North China Electric Power University. His work focuses on advancing high-voltage technology, particularly in the field of Ultra High Voltage (UHV) transmission and transformation. His role involves overseeing research initiatives and promoting technological innovation in power transmission systems, which are vital for China’s growing energy infrastructure.

 

📝Publication Achievements

With over 30 SCI-indexed papers published as either the first or corresponding author, Dr. Huang has made significant contributions to the fields of high-voltage technology and insulation design. His research papers, featured in prestigious journals such as CSEE JPES and EPSR, cover topics including corona effect and discharge theory. Additionally, Dr. Huang holds five national invention patents and has authored a monograph. His research outputs have not only advanced knowledge but have also provided practical solutions for the power transmission industry.

 

🔍Ongoing Research

Dr. Huang’s ongoing research delves into the complexities of corona effects and insulation design for UHV systems in challenging environments, such as high-altitude and sandstorm-prone areas. He is also investigating the industrial applications of micro-hollow cathode discharge and improving the insulation properties of solid materials. His work aims to enhance the reliability and efficiency of power transmission equipment, thereby supporting sustainable energy distribution.

 

🔬 Research Interests

Corona Effect: Investigating the impact of corona discharges on power transmission and methods to mitigate its effects.

Insulation Design: Focusing on the design of insulating materials and systems that can withstand harsh environmental conditions.

Discharge Theory: Examining discharge mechanisms and their application in high-voltage technology.

Micro-Hollow Cathode Discharge: Exploring industrial applications and potential improvements in insulation performance.

 

🎓Academic Background

Dr. Huang holds a Ph.D. in high-voltage technology, which laid the foundation for his expertise in the field. He further honed his skills and knowledge during his research visit to the Plasma Laboratory at the Australian National University in 2018. His academic background has been instrumental in his career, enabling him to contribute to both theoretical advancements and practical applications in UHV transmission.

 

🏆Scholarships and Awards 

Throughout his career, Dr. Huang has received numerous accolades, including the Yanzhao Talent A Card and the Ministry of Education’s Science and Technology Progress Award (Second Prize). These honors recognize his outstanding achievements and dedication to advancing electrical engineering and power transmission technology.

 

🧬Bioinformatics 

While his primary focus is on high-voltage engineering, Dr. Huang’s research indirectly contributes to bioinformatics by addressing energy distribution and sustainability, which are critical to supporting various technological advancements, including computational biology and data analysis frameworks.

 

🌐Professional Associations 

IEEE: Young Professionals, Power & Energy Society, Sensors Council, and Electromagnetic Compatibility Society.

Chinese Society for Electrical Engineering (CSEE)

International Council on Large Electric Systems (CIGRE) He also serves on the organizing committees for major conferences, such as the IEEE Industry Application Society, demonstrating his leadership in the global high-voltage engineering community.

 

 📚Training & Workshops 

In addition to his research, Dr. Huang is committed to professional development. He regularly participates in workshops and training programs to stay updated on the latest advancements in high-voltage technology and related fields. His involvement in these activities reflects his dedication to continuous learning and improvement.

 

🎤Oral Presentations and🗣️Thought Leadership 

Dr. Huang has delivered numerous presentations at national and international conferences, sharing his research findings and insights with the broader scientific community. His ability to effectively communicate complex topics has made him a respected speaker in his field.

 

🧑‍🔬Tasks Completed as a Researcher 

As a researcher, Dr. Huang has led multiple projects, including one funded by the National Natural Science Foundation of China. His work spans various aspects of high-voltage technology, from corona effect prediction and control to improving insulation materials. These projects have provided valuable insights into the challenges and solutions related to UHV power transmission.

 

🚀Success Factors 

Dr. Huang attributes his success to a combination of hard work, continuous learning, and strong collaboration with his peers. His dedication to research and teaching, coupled with his innovative mindset, has enabled him to achieve significant milestones in his career.

 

🧪Publications & Laboratory Experience

Dr. Huang’s extensive publication record and laboratory experience underscore his expertise in high-voltage engineering. His research has led to practical applications, such as improving power transmission reliability, which are crucial for the energy sector. His hands-on experience in laboratory settings has also allowed him to bridge the gap between theoretical research and practical implementation.

 

🔍 Conclusion

In conclusion, Dr. Huang Shilong’s contributions to high-voltage technology have been both profound and far-reaching. As a leader in UHV transmission and transformation, his work continues to impact China’s energy sector and beyond. Dr. Huang’s commitment to innovation, research excellence, and talent development positions him as a key figure in the field of electrical engineering. His dedication and achievements not only strengthen his personal career but also contribute to the advancement of sustainable energy solutions globally.

📚Publications

Consistency Calibration Method for Solar-Blind Ultraviolet Discharge Detection Results Based on Optical Radiation Intensity | 基于光辐射强度的日盲紫外放电检测结果一致性校准方法

          Authors: Yonglin, L., Shilong, H., Yunpeng, L., Jianghai, G., Jiajun, Y.

          Journal :Diangong Jishu Xuebao/Transactions of China Electrotechnical Society

 

Experimental and theoretical study on the influence of bundle number on corona loss characteristics of ultra high voltage corona cage positive/negative DC conductors at high altitude

           Authors: Xue, W., Huang, S., Mao, J., … Song, C., Liu, Y.

          Journal : Electric Power Systems Research

 

The altitude correction term of the corona loss on alternating-current transmission lines

         Authors: Huang, S., Ha, L., Liu, Y.

         Journal : Energy Reports

 

Audible Noise Performance of High Voltage AC Conductor Bundles at an Altitude of 2261m

          Authors: He, W., Wan, B., Huang, S., … Zhang, J., Han, X.

         Journal : CSEE Journal of Power and Energy Systems