Adaptive Bidirectional Inductive Power and Data Transmission System

握手 最大功率转移定理 电子工程 数据传输 计算机科学 传输(电信) 电气工程 无线电源传输 动力传输 功率控制 功率(物理) 无线 工程类 电信 物理 量子力学 计算机网络
作者
Jia-Jing Kao,Chun-Liang Lin,Yuchen Liu,Chih-Cheng Huang,Hau-Shian Jian
出处
期刊:IEEE Transactions on Power Electronics [Institute of Electrical and Electronics Engineers]
卷期号:36 (7): 7550-7563 被引量:4
标识
DOI:10.1109/tpel.2020.3047069
摘要

For the research of wireless power transfer, loosely coupled inductive power transfer (LCIPT) is one of the widely adopted technologies. There are already various researches focusing on development of high-efficiency LCIPT. However, when the transmission and receiver coils are misaligned, the power transfer efficiency will be significantly dropped. This article considers the change of mutual inductance when two induction coils are misaligned. A fuzzy control approach to solve for this problem by adaptively adjusting operational frequency is introduced. Experiments show that it can reduce the power transferring efficiency drop by 11% when two conduction coils are misaligned up to 50 mm. This research also supports adaptive maximum power transfer using tracking mechanism. Before conducting power transmission, the system can choose G2V or V2G according to the vehicle battery capacity via handshaking communication without the need of radio frequency links. In addition, the phase shift pulsewidth modulation technique is proposed for simultaneous data transmission enabling binary quadrature amplitude modulation for digital signal transmission. Fast over current protection is incorporated for power transfer safety when current overload happens. The transmission frequency of this article is controlled to meet the frequency specified by SAE TIR J2954.

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