Location History:
- Yokkaichi, JP (1998)
- Osaka, JP (1996 - 2010)
Company Filing History:
Years Active: 1996-2010
Title: Hiroshige Deguchi: Innovator in Redox Flow Battery Systems
Introduction
Hiroshige Deguchi is a prominent inventor based in Osaka, Japan. He has made significant contributions to the field of energy storage, particularly through his work on redox flow battery systems. With a total of 5 patents to his name, Deguchi's innovations aim to enhance the efficiency and reliability of energy systems.
Latest Patents
Deguchi's latest patents include a "Method for Designing Redox Flow Battery System" and a "Method for Operating Redox Flow Battery System." The first patent provides a method of designing a redox flow battery system that prevents efficiency loss during electric charge or discharge. This is achieved without the use of lead storage batteries, thereby improving overall system efficiency. The invention incorporates generating equipment that varies irregularly in output, allowing for smoother power generation. The second patent outlines an operating method for a redox flow battery system connected to a wind power generator. This method stabilizes output and enhances battery efficiency by utilizing historical output data for better command value determination.
Career Highlights
Throughout his career, Hiroshige Deguchi has worked with notable companies such as Sumitomo Electric Industries, Limited and Sumitomo Wiring Systems, Limited. His experience in these organizations has contributed to his expertise in energy systems and battery technology.
Collaborations
Deguchi has collaborated with esteemed colleagues, including Heiji Kuki and Sho Miyazaki. Their joint efforts have further advanced the development of innovative solutions in the field of energy storage.
Conclusion
Hiroshige Deguchi's work in redox flow battery systems exemplifies his commitment to innovation in energy technology. His patents reflect a deep understanding of the challenges in energy storage and provide practical solutions to enhance system efficiency.