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http://dx.doi.org/10.4283/JMAG.2013.18.4.466

Shorted Turn in the Hybrid Magnet Engine Valve Actuator for Enhanced Dynamic Performance  

Yi, Hwa Cho (Shool of Mechanical Engineering, Yeungnam University)
Hwang, Ki Il (LG Electronics)
Kim, Jihun (Korea Aerospace Research Institute)
Kim, Jin Ho (Shool of Mechanical Engineering, Yeungnam University)
Publication Information
Abstract
This paper presents a new design of the hybrid magnet engine valve actuator using the shorted turn for enhanced dynamic performance. The quick response of coil electric current is the most important factor that determines the opening and closing performance of the hybrid magnet engine valve. The conventional hybrid magnet engine valve actuator, however, has a delayed initial electric current rising when it is driven by voltage control because of the coil inductance which is a typical characteristic of an electromagnetic coil. A shorted turn is newly placed into the upper yoke of the hybrid magnet engine valve actuator to reduce coil inductance and thus, to hasten the initial electric current rising. We performed a dynamic finite element analysis to demonstrate the improvement of the dynamic characteristics of the hybrid magnet engine valve actuator due to the shorted turn.
Keywords
flat coil actuator; shorted turn; center pole; inductance; lumped parameter analysis; experiment;
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  • Reference
1 P. Barkan and T. Dresner, SAE Technical Paper Series (1989) p. 891676.
2 M. Pischinger, W. Salber, F. Staay, H. Baumgarten, and H. Kemper, SAE Technical Paper Series (2000) p. 1223.
3 M. Hamazaki and T. Hosaka, SAE Technical Paper Series (1991) p. 910008.
4 W. S. Chang, T. A. Parlikar, M. D. Seeman, D. J. Perreault, J. K. Kassakian, and T. A Keim, IEEE Trans. Power Electron. Trans. (2002) pp. 109-118.
5 J. Kim and D. K. Lieu, IEEE International Conference on Electric Machines and Drives (2005) pp. 1773-1779.
6 J. Arthur Wagner, IEEE Trans. Magn. 18, 1770 (1983).
7 Y. Hirano, J. Naruse, and R. Tsuchiyama, IEEE Trans. Magn. 25, 3073 (1989).   DOI   ScienceOn
8 C. Dong, IEEE Trans. Magn. 19, 1689 (1983).   DOI
9 H. D. Chai, San Jose State University.
10 J. Kim and D. K. Lieu, Mechanical Science and Technology (2007) pp. 602-606.
11 J. P. Wang, D. K. Lieu, W. L. Lorimer, and A. Hartman, IEEE Trans. Magn. 33, 4092 (1997).   DOI   ScienceOn