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A New Front End Capacitive Converter Fed Switched Reluctance Motor for Torque Ripple Minimization

DOI: 10.4236/cs.2016.75050, PP. 585-595

Keywords: SRM, MATLAB, Torque Ripple, Asymmetric Converter, Magnetization, Demagnetization

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Abstract:

This paper presents new converter for torque ripple minimization of three phases Switched Reluctance Motor (SRM). The proposed converter has basic passive circuit which includes two diodes and one capacitor to the front end of an asymmetric converter with a specific end goal to get a high magnetization and demagnetization voltage. In view of this boost capacitor, the charge and demagnetization voltage are higher. Accordingly, it can reduce the negative torque generation from the tail current and enhance the output power. The proposed converter circuit is equipped for minimizing the SRM torque ripple furthermore enhancing the average torque when contrasted with traditional converter circuit. A three-phase SRM is modeled and the simulation output for no load and stacked condition depicts that the proposed converter has better performance when contrasted with traditional converter. It is appropriate for electric vehicle applications. The proposed framework is simulated by utilizing MATLAB/Simulink environment and their outcomes are examined extravagantly.

References

[1]  Husain, I. (2002) Minimization of Torque Ripple in SRM Drives. IEEE Transactions on Industrial Electronics, 49, 28-39.
http://dx.doi.org/10.1109/41.982245
[2]  Xue, X.D., Cheng, K.W.E. and Ho, S.L. (2009) Optimization and Evaluation of Torque Sharing Functions for Torque Ripple Minimization in Switched Reluctance Motor Drives. IEEE Transaction on Power Electronics, 24, 2076-2090.
http://dx.doi.org/10.1109/TPEL.2009.2019581
[3]  Husain, I. and Ehsani, M. (1996) Torque Ripple Minimization in Switched Reluctance Motor Drives by PWM Current Control. IEEE Transaction on Power Electronics, 11, 83-88.
http://dx.doi.org/10.1109/63.484420
[4]  Krishnan, R. (2001) Switched Reluctance Motor Drives. CRC Press, Boca Raton.
http://dx.doi.org/10.1201/9781420041644
[5]  Cheok, A.D. and Fukuda, Y. (2002) A New Torque and Flux Control Method for Switched Reluctance Motor Drives. IEEE Transaction on Power Electronics, 17, 543-557.
http://dx.doi.org/10.1109/TPEL.2002.800968
[6]  Russak, H.I. and Elbulukt, M. (1998) Torque Ripple Minimization in Switched Reluctance Machines over a Wide Speed Range. IEEE Transactions on Industrial Electronics, 34, 1105-1112.
[7]  Pollock, C. and Williams, B.W. (1987) An Integrated Approach to Switched Reluctance Motor Design. Proceedings of EPE, 885-870.
[8]  Mir, S., Elbulukt, M. and Husain, I. (1999) Torque Ripple Minimization in Switched Reluctance Motor Using Adaptive Fuzzy Control. IEEE Transaction on Industrial Applications, 35, 461-468.
http://dx.doi.org/10.1109/28.753642
[9]  Sahoo, S.K., Dasgupta, S., Panda, S.K. and Xu, J.-X. (2012) A Lyapunov Function Based Robust Direct Torque Controller for Switched Reluctance Motor Drive Systems. IEEE Transaction on Power Electronics, 27, 555-564.
http://dx.doi.org/10.1109/TPEL.2011.2132740
[10]  Shaked, N.T. and Rabinovici, R. (2005) New Procedure for Minimizing the Torque Ripple in Switched Reluctance Motor by Optimizing the Phase Current Profile. IEEE Transaction on Magnetics, 41, 1184-1192.
http://dx.doi.org/10.1109/TMAG.2004.843311
[11]  Kioskeridis, I. and Mademlis, C. (2005) Maximum Efficiency in Single Pulse Controlled Switched Reluctance Motor Drives. IEEE Transaction on Energy Conversion, 20, 809-817.
http://dx.doi.org/10.1109/TEC.2005.853738
[12]  Lin, Z.Y., Reay, D.S., Williams, B.W. and He, X.N. (2006) Torque Ripple Reduction Scheme Using B-Spline Neural Network. IEEE Transaction on Industrial Applications, 42, 1445-1453.
http://dx.doi.org/10.1109/TIA.2006.882671
[13]  Krishnan, R., Park, S.Y. and Ha, K.S. (2005) Theory and Operation of a Four Quadrant Switched Reluctance Motor Drive with a Single Controllable Switch—The Lowest Cost Brushless Motor Drive. IEEE Transaction on Industrial Applications, 41, 1047-1055.
http://dx.doi.org/10.1109/TIA.2005.851019
[14]  Kim, J. and Krishnan, R. (2009) Novel Two Switch Based Switched Reluctance Motor Drive for Low Cost High Volume Application. IEEE Transaction on Industrial Applications, 45, 1241-1248.
http://dx.doi.org/10.1109/TIA.2009.2023568
[15]  Liang, J., Xu, G., Lee, D.-H. and Ahn, J.W. (2010) Analysis of Passive Boost Power Converter for Three Phase Drive. IEEE Transaction on Industrial Electronics, 57, 2961-2971.
http://dx.doi.org/10.1109/TIE.2010.2040558
[16]  Dahmane, A., Meebody, F. and Sargos, F.-M. (2001) A Novel Boost Capacitor Circuit to Enhance the Performance of the Switched Reluctance Motor. IEEE 32nd Annual Power Electronics Specialists Conference, Vancouver, 17-21 June 2001, 844-849. http://dx.doi.org/10.1109/pesc.2001.954225
[17]  Chan, S. and Bolton, H.R. (1993) Performance Enhancement of Single-Phase Switched-Reluctance Motor by DC Link Voltage Boosting. IEE Proceedings B—Electric Power Applications, 2, 316-322.
http://dx.doi.org/10.1049/ip-b.1993.0039
[18]  Hwu, K.I. and Liaw, C.M. (2000) DC-Link Voltage Boosting and Switching Control for Switched Reluctance Motor Drives. IEE Proceedings—Electric Power Applications, 147, 337-344.
http://dx.doi.org/10.1049/ip-epa:20000540
[19]  Lewis, J.D., Bolton, H.R. and Phillips, N.W. (1995) Performance Enhancement of Single and Two Phase SR Drives Using a Capacitor Boost Circuit. Proc. Eur. Power Electron. Appl. Conf., 3, 229-232.
[20]  Dessouky, G., Williams, B.W. and Fletcher, J.E. (1998) A Novel Power Converter with Voltage Boosting Capacitors for a Four-Phase SRM Drive. IEEE Transactions on Industrial Electronics, 45, 815-823.
http://dx.doi.org/10.1109/41.720339
[21]  Muthulakshmi, S. and Dhanasekaran, R. (2014) Performance Analysis of Current Controlled Three Phase Switched Reluctance Motor. International Journal on Recent Trends in Engineering and Technology, 10.
[22]  Hu, Y.H., Gan, C., Cao, W.P., Li, C.S. and Finney, S.J. (2015) Split Converter Fed SRM Drive for Flexible Charging in HV/HEV Applications. IEEE Transactions on Industrial Electronics, 62, 6085-6095.
http://dx.doi.org/10.1109/TIE.2015.2426142
[23]  Cai, W. and Yi, F. (2016) An Integrated Multiport Power Converter with Small Capacitance Requirement for Switched Reluctance Motor Drive. IEEE Transactions on Power Electronics, 31, 3016-3026.
http://dx.doi.org/10.1109/TPEL.2015.2442924

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