Title :
Wireless Power and Data Transfer via a Common Inductive Link Using Frequency Division Multiplexing
Author :
Jiande Wu ; Chongwen Zhao ; Zhengyu Lin ; Jin Du ; Yihua Hu ; Xiangning He
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
For wireless power transfer (WPT) systems, communication between the primary side and the pickup side is a challenge because of the large air gap and magnetic interferences. A novel method, which integrates bidirectional data communication into a high-power WPT system, is proposed in this paper. The power and data transfer share the same inductive link between coreless coils. Power/data frequency division multiplexing technique is applied, and the power and data are transmitted by employing different frequency carriers and controlled independently. The circuit model of the multiband system is provided to analyze the transmission gain of the communication channel, as well as the power delivery performance. The crosstalk interference between two carriers is discussed. In addition, the signal-to-noise ratios of the channels are also estimated, which gives a guideline for the design of mod/demod circuits. Finally, a 500-W WPT prototype has been built to demonstrate the effectiveness of the proposed WPT system.
Keywords :
air gaps; crosstalk; frequency division multiplexing; inductive power transmission; air gap; bidirectional data communication; circuit model; common inductive link; communication channel; coreless coils; crosstalk interference; data frequency division multiplexing technique; demod circuits; frequency carriers; high-power WPT system; magnetic interferences; mod circuits; multiband system; pickup side; power 500 W; power delivery performance; primary side; signal-to-noise ratios; transmission gain; wireless power transfer systems; Capacitors; Coils; Data communication; Inductors; Integrated circuit modeling; Inverters; Wireless communication; Frequency division multiplexing; Wireless power and data transfer; multi-band system; multiband system; near field magnetic communication; near-field magnetic communication; wireless power and data transfer;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2015.2453934