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terça-feira, 14 de maio de 2024
domingo, 5 de maio de 2024
Developing inexpensive and 40% improved lithium-ion batteries-KAIST-NEWS-Korea Advanced Institute of Science and Technology
Professor Seo Dong-hwa, Department of Materials Science and Engineering
In this study, Professor Jinhyuk Lee of McGill University participated as a co-corresponding author , and Eunryeol Lee, a postdoctoral researcher at UC Berkeley ( Ph.D. candidate in the Department of Energy and Chemical Engineering at UNIST at the time of the study ), and Daehyeong Lee , a doctoral candidate in the Department of Materials Science and Engineering at KAIST , participated as co- first authors . In addition , doctoral student Sangwook Park and master's student Hojun Kim of the Department of Materials Science and Engineering at KAIST participated as co-authors . The research was carried out with support from the National Research Foundation of Korea's basic research project in the field of science and technology , nano and material technology development project , original technology development project, and the energy human resources training project of the Ministry of Trade, Industry and Energy , and with the support of a supercomputer from the Korea Institute of Science and Technology Information. It was received and carried out .
The research results were published online on March 27th in the international energy journal ' Energy & Environmental Science ' and are scheduled to be published as the cover paper for the June issue . ( Paper title : Nearly all-active-material cathodes free of nickel and cobalt for Li-ion batteries).
ORIGINAL SOURCE: https://www.kaist.ac.kr/news/html/news/?mode=V&mng_no=36490
segunda-feira, 29 de abril de 2024
The Design of Wireless Power Transmission System for Charging Lithium Ion Battery using Magnetic Induction Choi Sang Gil Pusan National University, The Major of Robot Convergence 석 사 학 위 논 문 자기 유도 방식을 이용한 리튬 이온 배터리 충전용 무선 전력 전송 시스템 설계
The Design of Wireless Power Transmission System for Charging Lithium Ion Battery using Magnetic Induction BY Choi Sang Gil -Pusan National University, The Major of Robot Convergence 석 사 학 위 논 문 자기 유도 방식을 이용한 리튬 이온 배터리 충전용 무선 전력 전송 시스템 설계 최 상 길 부산대학교 대학원 로봇융합공학 2020년 2월
Abstract
In General, the charging speed of the batteries for an electric vehicle are
relatively longer than the conventional internal combustion engines in case of the
slow-charging. Also, the conventional batteries for electric vehicle use EV charging
stations or household outlets. This paper proposes a fast charging device for an
electric vehicle using LCC resonant converter operating in the ZVS region to solve
slow-charging problems. The Li-ion battery is charged in CC-CV mode and
proposes an algorithm for compensating for transients that occur when the Li-ion
battery is converted to CC-CV mode. The proposed rapid charging device has a
shorter charging time than the conventional device. Automatic wireless charging is
possible through parking of a fixed parking space so the situations such as
charging line disconnection due to human error can be solved.
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quarta-feira, 24 de abril de 2024
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