Beijing, China

Zhencun Nie

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Innovator Zhencun Nie: Advancements in HVDC Transmission Technology

Introduction: Zhencun Nie, an esteemed inventor based in Beijing, China, has made significant contributions to the field of high-voltage direct current (HVDC) transmission technology. His innovative approach to fault transient features optimization emphasizes the importance of energy efficiency and fault recovery in electrical systems.

Latest Patents: Nie holds a pivotal patent titled "Fault Transient Features Optimization Method and System of AC/DC System Based on Dissipated Energy." This invention addresses the challenges faced during the restart of HVDC transmission systems following faults, particularly the high DC pulsed currents and the excessive generator power angle swings on the rectifier side. The method his invention offers involves several calculations and optimizations to select control parameters that minimize the dynamic dissipated energy of the generator during fault recovery.

Career Highlights: Currently affiliated with North China Electric Power University, Zhencun Nie has dedicated his career to research and development in electric power systems. His contributions to HVDC technology have established him as a key figure in his field, and his work continues to inspire future innovations in energy transmission.

Collaborations: Nie often collaborates with fellow researcher Yufeng Zhao, with whom he works closely to push the boundaries of current technologies and explore new methodologies in electric power engineering.

Conclusion: Zhencun Nie remains a prominent inventor, leading advancements in HVDC transmission systems and optimizing fault recovery processes. Through his innovative approaches, he not only enhances the reliability of electric power systems but also sets the stage for further breakthroughs in energy transmission technology.

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