基于快速全双工信息速率装置的感应供电系统

K. Shyu, Ko-Wen Jwo, Zhengquan Chen, C. Lo
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引用次数: 8

摘要

本研究建立了一种利用电力感应传输和快速全双工信息的智能电池充电系统。感应式充电系统改善了传统充电系统的故障连接、火花和触电危险等缺点。电力和信息的感应传输具有安全、可靠、方便等优点。电力和信息通过一个铁氧体铁芯同时传输。这意味着将用于将电压或电流信号传递给初级控制输出电压的光耦合器替换为具有双向移幅键控(ASK)信号的全双工信息传输系统。在本文提出的感应充电系统中,信息传输速度受功率传输的开关频率限制。因此,信息的传输速度是本文研究的主要问题。所提出的信息传输不受电力传输的干扰,传输速度可达到200kbps以上,是其他感应充电系统的两倍以上。从二次到一次的反馈信号不仅用于控制输出电压,还用于检测气隙的长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inductive Power Supply System with Fast Full-Duplex Information Rate Device
This study establishes an intelligent battery charging system using inductive transmission of power and fast full-duplex information. The inductive charging system improves the drawback like failure connection, sparking and the risk of electrical shock of the conventional charging system. Inductive transmission of power and information has the advantages of safety, reliability, and convenience. The power and information are simultaneously transferred through one ferrite core. That means the photo coupler that is used to transfer the voltage or current signal to primary to control the output voltage is replaced by the full-duplex information transmission system with the bidirectional Amplitude Shift Keying (ASK) signal In the proposed inductive charging system, the information transmission speed is bounded by the switching frequency for the power transmission. Therefore, the information transmission speed is the main issue in this thesis. The proposed information transmission wouldn't be interfered by the power transmission and the transmission speed can achieve over 200 kbps that is twice more than other inductive charging system. The feedback signal from the secondary to the primary is not only used to control the output voltage, but also used to detect the length of air gap.
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