Shenzhen, China

Zelin Cai



Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Innovations by Zelin Cai in Micro-Landform Icing Prediction

Introduction

Zelin Cai is an innovative inventor based in China, recognized for his contributions to the field of power grid management. His work focuses on developing methods to predict icing conditions that can affect power infrastructure. This is particularly important for maintaining the reliability and safety of power grids in regions prone to severe weather.

Latest Patents

Zelin Cai holds a patent titled "Micro-Landform Icing Prediction Method For Power Grid, And System." This patent outlines a comprehensive method for predicting icing in power grids. The method involves determining regions requiring icing predictions, utilizing advanced weather forecasting models, and optimizing resource allocation for accurate predictions. Although he currently has 1 patents, his work demonstrates significant potential for future innovations in this area.

Career Highlights

Throughout his career, Zelin Cai has focused on integrating advanced modeling techniques with practical applications in power grid management. His innovative approach to icing prediction showcases his commitment to enhancing the reliability of power systems. His research is vital for improving the resilience of power grids against adverse weather conditions.

Collaborations

Zelin Cai has collaborated with notable colleagues, including Tao Feng and Li Li. These partnerships have contributed to the development of his innovative methods and have fostered a collaborative environment for research and development in the field.

Conclusion

Zelin Cai's work in micro-landform icing prediction represents a significant advancement in power grid management. His innovative methods and collaborative efforts highlight the importance of research in ensuring the reliability of power systems. The potential impact of his work is promising for the future of power grid safety and efficiency.

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