Guangdong, China

Weihuang Huang

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Weihuang Huang: Innovator in High Voltage Direct Current Technologies

Introduction

Weihuang Huang, an esteemed inventor based in Guangdong, China, has made significant contributions to the field of electrical engineering. With a focus on high voltage direct current (HVDC) systems, Huang's work is essential for enhancing the safety and efficiency of power systems.

Latest Patents

Huang holds a patent for a "Voltage Source Converter Based High Voltage Direct Current (VSC-HVDC) High-Frequency Resonance Suppression Method, System, and Device." This innovative technology addresses the challenges associated with high-frequency resonance in VSC-HVDC systems. The method involves tracking the actual electrical quantity to improve the dynamic characteristics of the power system during faults. By adapting to changes in alternating current (AC) voltage, the system enhances reliability and safety during operational disturbances.

Career Highlights

Huang is currently employed at the Electric Power Research Institute, a part of China Southern Power Grid. His role involves research and development aimed at advancing power conversion technologies and ensuring the stability of HVDC systems.

Collaborations

Throughout his career, Weihuang Huang has collaborated with notable colleagues, including Hong Rao and Guiyuan Li. Their partnerships underscore the importance of teamwork in advancing innovative solutions within the complex field of electrical power engineering.

Conclusion

Weihuang Huang's contributions to the VSC-HVDC technology illustrate his dedication to innovation in the electrical engineering domain. His patent not only offers a solution to critical technical problems but also plays a crucial role in the continuous advancement of electrical safety and efficiency. Huang's work exemplifies the impact of inventors on the future of power systems in our increasingly electrified world.

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