Capacitive Power Transfer for Rotor Field Current in Synchronous Machines

被引:146
作者
Ludois, Daniel C. [1 ]
Reed, Justin K. [1 ]
Hanson, Kyle [1 ]
机构
[1] Univ Wisconsin, Madison, WI 53706 USA
关键词
Brushless; capacitive power transfer; noncontact; resonant converter; rotating capacitor; slip rings; wireless power transfer; wound field synchronous machine (WFSM); CONTACTLESS TRANSFER; CONVERTER; ENERGY;
D O I
10.1109/TPEL.2012.2191160
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Permanent magnet (PM) synchronous machines are utilized in a wide variety of applications due to their many desirable characteristics, including high torque density capability and high efficiency. In the near future, however, the demand for the PM rare earth materials is projected to exceed world production. As a result, electric machines that do not rely on rare earth materials, such as wound field synchronous machines (WFSMs), are receiving renewed attention for use in traction and wind energy applications. However, WFSMs require a current delivery mechanism to the rotor such as mechanical slip rings whose components require periodic replacement and generate adverse debris within the machine enclosure. Rotary transformers may replace slip rings but also introduce rotor speed dependences and magnetic coupling difficulties. This paper proposes a capacitive noncontact power transfer technique to eliminate the need for mechanical slip rings while also avoiding the pitfalls of rotating transformer technologies. The capacitive power transfer system is compared to traditional rotor power coupling techniques and its performance is validated with experimental results.
引用
收藏
页码:4638 / 4645
页数:8
相关论文
共 24 条
[1]   BRUSHLESS EXCITATION SYSTEMS FOR SYNCHRONOUS MACHINES [J].
ALLEN, GFH .
ELECTRONICS AND POWER, 1975, 21 (15) :866-869
[2]  
[Anonymous], IND APPL INDUSCON 20
[3]  
[Anonymous], 2007, 42112007 IEEE, P1, DOI [10.1109/IEEESTD.2007.385319, DOI 10.1109/IEEESTD.2007.385319]
[4]  
Chao Liu, 2009, Proceedings of the 2009 IEEE Energy Conversion Congress and Exposition. ECCE 2009, P3233, DOI 10.1109/ECCE.2009.5316216
[5]   HIGH INITIAL RESPONSE BRUSHLESS EXCITATION SYSTEM [J].
DILLMAN, TL ;
SKOOGLUN.JW ;
KEAY, FW ;
SOUTH, WH ;
RACZKOWS.C .
IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1971, PA90 (05) :2089-&
[6]  
Erickson R.W., 2007, Fundamentals of power electronics
[7]   INTEGRATED STARTER GENERATOR Design, principle, constraints, and optimal control [J].
Friedrich, Guy ;
Girardin, Anthony .
IEEE INDUSTRY APPLICATIONS MAGAZINE, 2009, 15 (04) :26-34
[8]  
HALL RD, 2010, PULP PAP IND TECHN C, P1, DOI DOI 10.1109/PAPCON.2010.5556522
[9]   Evaluation of Magnetic Materials for Very High Frequency Power Applications [J].
Han, Yehui ;
Cheung, Grace ;
Li, An ;
Sullivan, Charles R. ;
Perreault, David J. .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2012, 27 (01) :425-435
[10]  
Hurst C., 2010, China's rare earth elements industry: what can the West learn?