最大功率转移定理
电气工程
整流器(神经网络)
拓扑(电路)
无线电源传输
电容器
功率(物理)
计算机科学
电子工程
工程类
电压
物理
电磁线圈
量子力学
人工智能
人工神经网络
随机神经网络
循环神经网络
作者
Chunwei Ma,Xiaohui Qu,Yundi Li,Jinghang Liu
标识
DOI:10.1109/tpel.2023.3248077
摘要
Compared with the constant current (CC) charging mode, the constant power (CP) charging mode can speed up the battery charging rate and free the charger from excessive thermal design problems. However, the range of the battery's equivalent resistance in CP mode is wider than that in CC mode, which makes it difficult to track the optimal resistance of the inductive power transfer (IPT) system for efficiency enhancement. To solve this problem, this article proposes a single-stage active rectifier (SSAR) integrating an interleaved buck converter with a full-bridge active rectifier (FBAR). Compared with the traditional FBAR, the resistance conversion ratio range of the SSAR is extended from $[0, 8/\pi ^{2}]$ to $[0, 8]$ , and the output current ripple is reduced due to the interleaved operation. A novel optimal phase angle control strategy is correspondingly proposed for the IPT system with the SSAR, which features advantages of wide impedance conversion ratio range, zero voltage switching turn- on of all mosfet s, and no communication between the primary and the secondary sides. A 150-W experimental prototype is provided to verify the effectiveness of the proposed rectifier.
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