A wireless power transfer method for electric vehicles by synchronization to secondary resonance

Title A wireless power transfer method for electric vehicles by synchronization to secondary resonance
Author Çeşmeci, Mete, Poyrazoğlu, Göktürk
Publication Date: 2021
Publication Place - IEEE
Subject Inductive power transmission, Robots, Wireless power transmission
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-166543582-6
Record ID 99c55e69-3c03-4789-a3cd-cec85c35a79e
Library Location Electrical & Electronics Engineering
Date 2021
Sample Text In this study, an alternative method and framework for a wireless power transfer system to a moving object such as an electric vehicle or a robot are presented. The well-known systems and their common series-connected/switched road embedded segment structures are discussed and challenged. Then, an alternative method of synchronization to the secondary resonance is presented. The suggested method eliminates switches between road-embedded coil units and makes the energy transition easy among units. This method shortens the length of the EMF radiative part of road embedded segments and the application is suitable for two-dimensional floor embedded structures for robot applications. The experimental setup and the simulation results are shared with the framework of further study.
DOI 10.1109/ELMA52514.2021.9503062
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A wireless power transfer method for electric vehicles by synchronization to secondary resonance

Author Çeşmeci, Mete, Poyrazoğlu, Göktürk
Publication Date 2021
Publication Place - IEEE
Subject Inductive power transmission, Robots, Wireless power transmission
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-166543582-6
Record ID 99c55e69-3c03-4789-a3cd-cec85c35a79e
Library Location Electrical & Electronics Engineering
Date 2021
Sample Text In this study, an alternative method and framework for a wireless power transfer system to a moving object such as an electric vehicle or a robot are presented. The well-known systems and their common series-connected/switched road embedded segment structures are discussed and challenged. Then, an alternative method of synchronization to the secondary resonance is presented. The suggested method eliminates switches between road-embedded coil units and makes the energy transition easy among units. This method shortens the length of the EMF radiative part of road embedded segments and the application is suitable for two-dimensional floor embedded structures for robot applications. The experimental setup and the simulation results are shared with the framework of further study.
DOI 10.1109/ELMA52514.2021.9503062
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