DocumentCode :
3566196
Title :
Design considerations to reduce gap variation and misalignment effects for inductive power transfer system
Author :
Cong Zheng ; Rui Chen ; Jih-sheng Lai
Author_Institution :
Bradley Dept. of Electr. & Comput. Eng., Virginia Polytech. & State Univ., Blacksburg, VA, USA
fYear :
2014
Firstpage :
1384
Lastpage :
1390
Abstract :
An inductive power transfer (IPT) system usually consists of four parts: an AC-DC power factor correction (PFC) converter, a high frequency DC-AC inverter, a compensation network comprising a loosely coupled transformer (LCT) and the resonant capacitors, and a rectification output circuit. Due to the relative large air gap, the magnetic coupling coefficient of the IPT system is poor, different from the closely-coupled IPT systems. As a result, the efficiency of the IPT system is always a main concern for different applications. To ensure high power transfer efficiency, these IPT systems should have high tolerance for different gap variation and horizontal misalignment conditions. In this paper, some design considerations to reduce gap and misalignment effects for the IPT system is proposed. By using finite element analysis (FEA) simulation method, the performance of different transmitter and receiver coil dimensions are compared. In order to validate the performance of the proposed design considerations, a hardware prototype is built and the corresponding experiments are carried out. The experimental results shows that the LCT prototype could maintain coupling coefficient between 0.237~0.212 within 40 mm horizontal misalignment.
Keywords :
AC-DC power convertors; DC-AC power convertors; finite element analysis; inductive power transmission; invertors; power factor correction; rectifying circuits; AC-DC PFC converter; AC-DC power factor correction converter; FEA simulation method; IPT system; LCT; compensation network; distance 400 mm; finite element analysis simulation method; gap variation; high frequency DC-AC inverter; horizontal misalignment conditions; inductive power transfer system; loosely coupled transformer; magnetic coupling coefficient; rectification output circuit; resonant capacitors; Coils; Decision support systems; Equivalent circuits; Finite element analysis; Integrated circuit modeling; finite element analysis; inductive power transfer; loosely coupled transformer; misalignment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, IECON 2014 - 40th Annual Conference of the IEEE
Type :
conf
DOI :
10.1109/IECON.2014.7048682
Filename :
7048682
Link To Document :
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