Magnetic Field Analysis of a Permanent-Magnet Induction Generator
Author:
Affiliation:
1. Division of Electrical Engineering, Kanazawa Institute of Technology
2. Advanced Optical Electro Magnetic Field Science Laboratory, Kanazawa Institute of Technology
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Subject
Electrical and Electronic Engineering,Industrial and Manufacturing Engineering
Link
https://www.jstage.jst.go.jp/article/ieejias/124/12/124_12_1274/_pdf
Reference7 articles.
1. (1) W. F. Low and N. Schofield: “Design of a Permanent Magnet Excited Induction Generator”, Proc. ICEM 92, Manchester University, Vol. 3, pp. 1077-1081 (1992-8)
2. (2) T. Fukami, K. Nakagawa, R. Hanaoka, S. Takata, and T. Miyamoto: “Nonlinear Modeling of a Permanent-Magnet Induction Machine”, T. IEE Japan, Vol. 122-D, No. 7, pp. 752-759 (2002-7) (in Japanese)
3. (3) T. Fukami, K. Nakagawa, Y. Kanamaru, and T. Miyamoto: “A Technique for the Steady-State Analysis of a Grid-Connected Permanent-Magnet Induction Generator”, IEEE T. Energy Conversion, Vol. 19, No. 2, June, pp. 318-324 (2004-6)
4. (4) T. Fukami, M. Yokoi, Y. Kanamaru, and T. Miyamoto: “Performance Evaluation of a Permanent-Magnet Induction Generator”, IEEJ Trans. IA, Vol. 123, No. 9, pp. 1065-1070 (2003-9) (in Japanese)
5. (5) T. Fukami, T. Tsuda, Y. Kanamaru, and T. Miyamoto: “Performance Analysis of a Permanent-Magnet Induction Generator Connected to a Single-Phase Power System”, The Papers of Tech. Meeting on Rotating Mach., IEE Japan, Vol. RM-03-119, pp. 37-42 (2003-10) (in Japanese)
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1. Performance analysis of the permanent-magnet induction generator under unbalanced grid voltages;Electrical Engineering in Japan;2007
2. Performance Analysis of a Permanent-Magnet Induction Generator under Unbalanced Grid Voltages;IEEJ Transactions on Industry Applications;2006
3. Performance Analysis of a Permanent-Magnet Induction Generator Connected to a Single-Phase Power Grid;IEEJ Transactions on Industry Applications;2005
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