Wuppertal, Germany

Alexei Babizki

USPTO Granted Patents = 3 

 

Average Co-Inventor Count = 2.4

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2018-2020

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3 patents (USPTO):Explore Patents

Title: Innovations of Alexei Babizki

Introduction

Alexei Babizki is a notable inventor based in Wuppertal, Germany. He has made significant contributions to the field of electrical engineering, particularly in the area of power systems. With a total of 3 patents, Babizki's work focuses on enhancing the stability and efficiency of electrical networks.

Latest Patents

Babizki's latest patents include a "Method for controlling a variable transformer and electrical system for coupling two AC networks." This invention involves a method of controlling a regulating transformer with a settable translation ratio. The process includes detecting phasor data, determining equivalent circuit parameters, and predicting working points for desired translation ratios. Another significant patent is the "Method and apparatus for controlling stability of a local power grid." This invention relates to a device and method for maintaining the stability of a local network, which comprises multiple outgoing circuits with loads and decentralized energy generation systems.

Career Highlights

Alexei Babizki is currently employed at Maschinenfabrik Reinhausen GmbH, a company known for its innovations in power engineering. His work at this company has allowed him to develop and refine his inventions, contributing to advancements in electrical systems.

Collaborations

Throughout his career, Babizki has collaborated with notable colleagues, including Haijun Feng and Klaus Krueger. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas.

Conclusion

Alexei Babizki's contributions to electrical engineering through his patents and collaborations highlight his role as a significant inventor in the field. His work continues to influence the stability and efficiency of power systems.

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