Controller Design Using Coefficient Diagram Methods for Matrix Converter Based Unified Power Flow Controllers
Author:
Affiliation:
1. Kyushu Institute of Technology
2. Universiti Putra Malaysia
Publisher
Japan Society of Applied Electromagnetics and Mechanics
Link
https://www.jstage.jst.go.jp/article/jsaem/21/3/21_369/_pdf
Reference8 articles.
1. [1] J. Itoh, I. Sato, A. Odaka et al, “A Control Method for the Matrix Converter Based on Virtual AC/DC/AC Conversion Using Carrier Comparison Method,” Electrical Engineering in Japan, Vol. 152, No. 3, pp. 65-73, 2005.
2. [2] J. Monteiro, J. F. Silva, S. F. Pinto and J. Palma, “Matrix Converter-Based Unified Power-Flow Controllers: Advanced Direct Power Control Method,” IEEE Trans. Power Delivery, Vol. 26, No. 1, pp. 420-430, 2011.
3. [3] A. Arias, C. A. Silva, G. M. Asher et al, “Use of a Matrix Converter to Enhance the Sensorless Control of a Surface-Mount Permanent-Magnet AC Motor at Zero and Low Frequency,” IEEE Trans. Ind. Elec., Vol. 53, No. 2, pp. 440-449, 2006.
4. [4] A-A. Edris et al., “Proposed Terms and Definitions for Flexible AC Transmission System(FACTS),” IEEE Trans. Power Delivery, Vol. 12, No. 4, pp. 1848-1853, 1997.
5. [5] N. F. Mailah, S. M. Bashi, I. Aris and N. Mariun, “Effect of UPFC's Series Converter Phase Shift on Output Voltage and Current's Total Harmonics Distortion,” Proc. APSAEM2010, pp. 541-544, 2010.
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1. DDPWM-Based Power Conversion System Using a Matrix Converter for an Isolated Power Supply;Journal of the Japan Society of Applied Electromagnetics and Mechanics;2015
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