Paper
10 August 2023 Power flow management in multi-receiver wireless power transfer systems for electric vehicles free from real-time communication
Zhi Feng, Junjun Deng, Ying Yang
Author Affiliations +
Proceedings Volume 12748, 5th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2023); 127483Q (2023) https://doi.org/10.1117/12.2689435
Event: 5th International Conference on Information Science, Electrical and Automation Engineering (ISEAE 2023), 2023, Wuhan, China
Abstract
Wireless charger is a reasonable power supply option for electric vehicles (EVs), especially the multi-receiver one system showing potential in the charge-while-drive scenario. From the circuit analysis, it can be seen difficult to maintain specified power distribution among receivers. This study then proposes a real-time communication-free power flow management method of the multi-receiver wireless charger for EVs, considering constant power distribution among receivers. The control diagram and detailed control process are explained. Take the dual-receiver system as an example, constant power distribution is reached and the proposed method has been validated.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Zhi Feng, Junjun Deng, and Ying Yang "Power flow management in multi-receiver wireless power transfer systems for electric vehicles free from real-time communication", Proc. SPIE 12748, 5th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2023), 127483Q (10 August 2023); https://doi.org/10.1117/12.2689435
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KEYWORDS
Receivers

Resistance

Control systems

Wireless communications

Batteries

Modulation

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