Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control
This paper presents a technique for speed sensorless Rotor Flux Oriented Control (RFOC) of 3-phase Induction Motor (IM) under open-phase fault (unbalanced or faulty IM). The presented RFOC strategy is based on rotational transformation. An adaptive sliding mode control system with an adaptive switch...
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Institute of Advanced Engineering and Science
2014
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my.utm.626392017-07-06T05:16:46Z http://eprints.utm.my/id/eprint/62639/ Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control Jannati, Mohammad Monadi, Ali Nik Idris, Nik Rumzi Abdul Aziz, Mohd. Junaidi TK Electrical engineering. Electronics Nuclear engineering This paper presents a technique for speed sensorless Rotor Flux Oriented Control (RFOC) of 3-phase Induction Motor (IM) under open-phase fault (unbalanced or faulty IM). The presented RFOC strategy is based on rotational transformation. An adaptive sliding mode control system with an adaptive switching gain is proposed instead of the speed PI controller. Using an adaptive sliding mode control causes the proposed speed sensorless RFOC drive system to become insensitive to uncertainties such as load disturbances and parameter variations. Moreover, with adaptation of the sliding switching gain, calculation of the system uncertainties upper bound is not needed. Finally, simulation results have been presented to confirm the good performance of the proposed method. Institute of Advanced Engineering and Science 2014 Article PeerReviewed Jannati, Mohammad and Monadi, Ali and Nik Idris, Nik Rumzi and Abdul Aziz, Mohd. Junaidi (2014) Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control. International Journal of Power Electronics and Drive Systems, 4 (3). pp. 406-418. ISSN 2088-8694 http://iaesjournal.com/online/index.php/IJPEDS/article/view/6212 |
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TK Electrical engineering. Electronics Nuclear engineering Jannati, Mohammad Monadi, Ali Nik Idris, Nik Rumzi Abdul Aziz, Mohd. Junaidi Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
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This paper presents a technique for speed sensorless Rotor Flux Oriented Control (RFOC) of 3-phase Induction Motor (IM) under open-phase fault (unbalanced or faulty IM). The presented RFOC strategy is based on rotational transformation. An adaptive sliding mode control system with an adaptive switching gain is proposed instead of the speed PI controller. Using an adaptive sliding mode control causes the proposed speed sensorless RFOC drive system to become insensitive to uncertainties such as load disturbances and parameter variations. Moreover, with adaptation of the sliding switching gain, calculation of the system uncertainties upper bound is not needed. Finally, simulation results have been presented to confirm the good performance of the proposed method. |
format |
Article |
author |
Jannati, Mohammad Monadi, Ali Nik Idris, Nik Rumzi Abdul Aziz, Mohd. Junaidi |
author_facet |
Jannati, Mohammad Monadi, Ali Nik Idris, Nik Rumzi Abdul Aziz, Mohd. Junaidi |
author_sort |
Jannati, Mohammad |
title |
Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
title_short |
Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
title_full |
Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
title_fullStr |
Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
title_full_unstemmed |
Speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
title_sort |
speed sensorless vector control of unbalanced three-phase induction motor with adaptive sliding mode control |
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Institute of Advanced Engineering and Science |
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2014 |
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http://eprints.utm.my/id/eprint/62639/ http://iaesjournal.com/online/index.php/IJPEDS/article/view/6212 |
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