Shandong, China

Facai Xing

USPTO Granted Patents = 1 

Average Co-Inventor Count = 13.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Facai Xing: Innovator in Half-Wavelength Transmission Systems

Introduction

Facai Xing is a notable inventor based in Shandong, China. He has made significant contributions to the field of electrical engineering, particularly in the area of transmission systems. His innovative work focuses on enhancing the stability of half-wavelength transmission systems.

Latest Patents

Facai Xing holds a patent for a "Method and system for quickly determining transient stability of half-wavelength transmission system." This patent outlines a method that includes obtaining power and a power angle of a feeding-end generator of a half-wavelength transmission system. The invention aims to determine transient power angle stability and a power angle instability mode by utilizing a constructed index system. Specifically, it constructs two power angle instability modes, which are tailored for the half-wavelength transmission system based on an equal area method. This approach allows for an accurate description of transient power angle characteristics under severe faults, highlighting the distinct differences from traditional AC transmission modes.

Career Highlights

Facai Xing is affiliated with the State Grid Shandong Electric Power Research Institute, where he applies his expertise in electrical engineering. His work at this institute has been pivotal in advancing research and development in power transmission technologies.

Collaborations

Facai Xing has collaborated with notable colleagues, including Hao Tian and Dong Yang. Their combined efforts contribute to the innovative research and development within their field.

Conclusion

Facai Xing's contributions to the field of half-wavelength transmission systems demonstrate his commitment to advancing electrical engineering. His innovative patent reflects a significant step forward in ensuring the stability of power transmission systems.

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