Modeling and Simulation of Permanent Magnet Synchronous Motor Drives Feeded by Three Phase Rectifier

Main Article Content

กิตติวงศ์ สุธรรมโน

Abstract

This paper presents a mathematical model of system with constant power loads. These are speed controlled permanent magnet synchronous motor drive and output voltage controlled buck converter. The considered CPLs are feeded by a three phase rectifier via the DC-link filters. The DQ method and the generalized state-space averaging method (GSSA)  are used to derive the dynamic model to achieve the time invariant model. The proposed model is suitable for the stability analysis due to CPL. The simulation via the exact topological model of MATLAB is used to validate the proposed model. The results show that a good agreement between the derived model and the exact topological model can be achieved.

Article Details

How to Cite
[1]
สุธรรมโน ก., “Modeling and Simulation of Permanent Magnet Synchronous Motor Drives Feeded by Three Phase Rectifier”, sej, vol. 13, no. 3, pp. 102–113, Dec. 2018.
Section
Research Articles

References

[1] A. Emadi, A. Khaligh, C.H. Rivetta, and G.A. Williamson, “Constant power loads and negative impedance instability in automotive system: definition, modeling, stability, and control of power electronics converter and motor drives”, IEEE Trans. on Vehicular Tech., vol. 55, no. 4, pp. 1112-1125, July 2006.

[2] K-N. Areerak, S.V. Bozhko, G.M. Asher, and D.W.P. Thomas, “Stability analysis and modeling of AC-DC system with mixed load using DQ-transformation method”, IEEE International Symposium on Industrial Electronics (ISIE08), Cambridge, UK, 29 June – 2 July 2008, pp. 19-24,

[3] Y. A.-R. I. Mohamed, A.A.A. Radwan, and T.K. Lee, “Decoupled reference-voltage-based active dc-link stabilization for PMSM drives with tight-speed regulation”, IEEE Trans. on Indus. Elect., vol. 59, no. 12, pp. 4523-4536, December 2012.

[4] J. Mahdavi, A. Emadi, M.D. Bellar, and M. Ehsani, “Analysis of power electronic converter using the generalized state-space averaging approach”, IEEE Trans. on Circuit and System., vol. 44, pp. 767-770, August 1997.

[5] T. Sopapirm, K-N. Areerak, and K-L. Areerak, “Mathematical of a three-phase diode rectifier feeding a controlled buck converter”, International Review on Modeling and Simulations, pp. 1426-1439, August 2011.

[6] R. Monajemy and R. Krishnan, “Control and dynamics of constant-power-loss-based operation of permanent magnet synchronous motor drive system”. IEEE Trans. on Industrial Electronics, Vol. 48, no. 4 , pp. 839-844, August 2001.

[7] R .Krishnan, “Permanent Magnet Synchronous and Brushless DC Motor Drives.”, CRC Press, 2010, pp. 226-276.

[8] K. Suthamno and S. Sujitjorn, “Modelling of permanent magnet synchronous motor incorporating core-loss”,Research Journal of Applied Sciences, Engineering and Technology., vol. 4, no. 17, pp. 2846-2853, September 2012.