Key Technologies of Magnetically-Coupled Resonant Wireless Power Transfer
Zhang, Yiming
Key Technologies of Magnetically-Coupled Resonant Wireless Power Transfer by Yiming Zhang - 1 recurso en línea (XVIII, 117 páginas) 82 ilustraciones, 45 ilustraciones a color - Springer Theses, Recognizing Outstanding Ph.D. Research 2190-5053 Engineering (Springer-11647) .
Introduction -- Basic Structure and Theory -- Reducing Frequency -- Frequency Splitting -- Multiple-load Transfer -- Active-source Load -- Conclusion.
This thesis focuses on the key technologies involved in magnetically coupled Wireless Power Transfer (WPT). Starting from the basic structures and theories of WPT, it addresses four fundamental aspects of these systems. Firstly, it analyzes the factors affecting transfer efficiency and compares various methods for reducing the working frequency. Secondly, it discusses frequency splitting and offers a physical explanation. Thirdly, it proposes and assesses three multiple-load transfer structures. Lastly, it investigates WPT systems with active voltage-source and current-source load. As such, the thesis offers readers a deeper understanding of WPT technology, while also proposing insightful new advances.
9789811065385
10.1007/978-981-10-6538-5 doi
Energía eléctrica--Distribución
Magnetismo
TK3091 / 2018 EB
Key Technologies of Magnetically-Coupled Resonant Wireless Power Transfer by Yiming Zhang - 1 recurso en línea (XVIII, 117 páginas) 82 ilustraciones, 45 ilustraciones a color - Springer Theses, Recognizing Outstanding Ph.D. Research 2190-5053 Engineering (Springer-11647) .
Introduction -- Basic Structure and Theory -- Reducing Frequency -- Frequency Splitting -- Multiple-load Transfer -- Active-source Load -- Conclusion.
This thesis focuses on the key technologies involved in magnetically coupled Wireless Power Transfer (WPT). Starting from the basic structures and theories of WPT, it addresses four fundamental aspects of these systems. Firstly, it analyzes the factors affecting transfer efficiency and compares various methods for reducing the working frequency. Secondly, it discusses frequency splitting and offers a physical explanation. Thirdly, it proposes and assesses three multiple-load transfer structures. Lastly, it investigates WPT systems with active voltage-source and current-source load. As such, the thesis offers readers a deeper understanding of WPT technology, while also proposing insightful new advances.
9789811065385
10.1007/978-981-10-6538-5 doi
Energía eléctrica--Distribución
Magnetismo
TK3091 / 2018 EB