Simplified Deadbeat Predictive Torque Control Based on Discrete Space Vector Modulation for Driving an Open-End Winding Permanent Magnet Synchronous Motor
Author:
Affiliation:
1. Department of Electrical and Computer Engineering, Ajou University
2. Department of H&A Power Conversion, LG Electronics Inc.
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Link
https://www.jstage.jst.go.jp/article/ieejjia/13/3/13_23009352/_pdf
Reference31 articles.
1. (1) M. Tursini, E. Chiricozzi, and R. Petrella: “Feedforward flux-weakening control of surface-mounted permanent-magnet synchronous motors accounting for resistive voltage drop”, IEEE Trans. Power Electron., Vol. 57, No. 1, pp. 440-448 (2010)
2. (2) S. Kim and J.-K. Seok: “Maximum voltage utilization of IPMSMs using modulating voltage scalability for automotive applications”, IEEE Trans. Power Electron., Vol. 28, No. 12, pp. 5639-5646 (2013)
3. (3) Q. An, J. Liu, L. Sun, and L. Sun: “Dual-space vector control of open-end winding permanent magnet synchronous motor drive fed by dual inverter”, IEEE Trans. Power Electron., Vol. 31, No. 12, pp. 8329-8342 (2016)
4. (4) V. T. Somasekhar, S. Srinivas, and K. K. Kumar: “Effect of zero-vector placement in a dual-inverter fed open-end winding induction-motor drive with a decoupled space-vector PWM strategy”, IEEE Trans. Power Electron., Vol. 55, No. 6, pp. 2497-2505 (2008)
5. (5) P. Sandulescu, F. Meiguet, X. Kestelyn, E. Semail, and A. Bruyére: “Control strategies for open-end winding drives operating in the flux-weakening region”, IEEE Trans. Power Electron., Vol. 29, No. 9, pp. 4829-4842 (2014)
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