A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive
Organized by School of Mechatronic Engineering (UniMAP) & co-organized by The Institution of Engineering Malaysia (IEM), 11th - 13th October 2009 at Batu Feringhi, Penang, Malaysia.
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Universiti Malaysia Perlis
2009
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my.unimap-72962016-06-12T14:14:01Z A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive P., Veena Jeyabharath, R. M., Rajaram Sivanandam, S.N. veena_gce@yahoo.co.in Direct torque control Fuzzy logic control Duty ratio control Switched reluctance motor drive Electric machinery -- Alternating current -- Automatic control Electric driving -- Automatic control Organized by School of Mechatronic Engineering (UniMAP) & co-organized by The Institution of Engineering Malaysia (IEM), 11th - 13th October 2009 at Batu Feringhi, Penang, Malaysia. Direct torque control (DTC) of Switched reluctance motor is known to have simple control structure with comparable performance to that of field oriented control techniques Direct Torque Control has get more and more attentions, but there still are many problems need to be solved in this field. One of these is to minimize the torque ripple and current harmonics. As we all know the output voltage in DTC contains much harmonics for applying hysteresis band in this kind of system. In this paper the torque ripple in DTC is analyzed in detail with little signal model. It is found that the torque ripple can be divided into two parts, one is only related to the motor parameter and the other is related to not only the applied voltage but also the rotor angular velocity. Based on the analysis, a duty ratio modulation method is proposed that only sends the voltage vector in part of the sampling period, while in the rest time of the sampling period zero voltage vector is sent. The duty ratio modulation algorithm, which is induced from the torque ripple analysis, allocates the sampling period. Simulation results indicate the effectiveness of the proposed torque ripple minimizing method. 2009-11-17T01:32:07Z 2009-11-17T01:32:07Z 2009-10-11 Working Paper p.2B9 1 - 2B9 6 http://hdl.handle.net/123456789/7296 en Proceedings of the International Conference on Man-Machine Systems (ICoMMS 2009) Universiti Malaysia Perlis |
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Direct torque control Fuzzy logic control Duty ratio control Switched reluctance motor drive Electric machinery -- Alternating current -- Automatic control Electric driving -- Automatic control |
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Direct torque control Fuzzy logic control Duty ratio control Switched reluctance motor drive Electric machinery -- Alternating current -- Automatic control Electric driving -- Automatic control P., Veena Jeyabharath, R. M., Rajaram Sivanandam, S.N. A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive |
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Organized by School of Mechatronic Engineering (UniMAP) & co-organized by The Institution of Engineering Malaysia (IEM), 11th - 13th October 2009 at Batu Feringhi, Penang, Malaysia. |
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veena_gce@yahoo.co.in |
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veena_gce@yahoo.co.in P., Veena Jeyabharath, R. M., Rajaram Sivanandam, S.N. |
format |
Working Paper |
author |
P., Veena Jeyabharath, R. M., Rajaram Sivanandam, S.N. |
author_sort |
P., Veena |
title |
A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive |
title_short |
A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive |
title_full |
A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive |
title_fullStr |
A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive |
title_full_unstemmed |
A high performance DTC strategy for torque ripple minimization using duty ratio control for SRM drive |
title_sort |
high performance dtc strategy for torque ripple minimization using duty ratio control for srm drive |
publisher |
Universiti Malaysia Perlis |
publishDate |
2009 |
url |
http://dspace.unimap.edu.my/xmlui/handle/123456789/7296 |
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1643788751838642176 |