Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm
Predictive Torque Control (PTC) is an acceptable alternate to Direct Torque Control (DTC) of induction motors. The limitation of classical PTC is selection of weighting factor, improper selection of weighting factors lead to distortions in current, voltage, high torque and flux ripple. In classical...
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Format: | Article |
Language: | English |
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Taylor & Francis Group
2017-01-01
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Series: | Cogent Engineering |
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Online Access: | http://dx.doi.org/10.1080/23311916.2017.1388206 |
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author | Kunisetti V. Praveen Kumar K.M. Ravi Eswar Thippiripati Vinay Kumar |
author_facet | Kunisetti V. Praveen Kumar K.M. Ravi Eswar Thippiripati Vinay Kumar |
author_sort | Kunisetti V. Praveen Kumar |
collection | DOAJ |
description | Predictive Torque Control (PTC) is an acceptable alternate to Direct Torque Control (DTC) of induction motors. The limitation of classical PTC is selection of weighting factor, improper selection of weighting factors lead to distortions in current, voltage, high torque and flux ripple. In classical PTC, to reduce torque and flux ripples manual tuning of weighting factors is needed and weighting factors are selected empirically. To circumvent tedious tuning process of weighting factor, this article proposes a new self-tuned PTC algorithm to Open End Winding Induction Motor (OEWIM) drive. OEWIM’s are more popular in electric vehicles, ship propulsion but they require ripple free torque. A new self-tuned PTC algorithm is implemented to OEWIM with multi-level inversion to reduce torque and flux ripples. The effectiveness of proposed PTC algorithm was tested by applying it to multi-level inverter fed OEWIM drive through simulation and experimental verification. |
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id | doaj.art-1dbe85ed25bc4c3ab6d3584503dff9c7 |
institution | Directory Open Access Journal |
issn | 2331-1916 |
language | English |
last_indexed | 2024-03-12T09:32:51Z |
publishDate | 2017-01-01 |
publisher | Taylor & Francis Group |
record_format | Article |
series | Cogent Engineering |
spelling | doaj.art-1dbe85ed25bc4c3ab6d3584503dff9c72023-09-02T13:51:32ZengTaylor & Francis GroupCogent Engineering2331-19162017-01-014110.1080/23311916.2017.13882061388206Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithmKunisetti V. Praveen Kumar0K.M. Ravi Eswar1Thippiripati Vinay Kumar2National Institute of TechnologyNational Institute of TechnologyNational Institute of TechnologyPredictive Torque Control (PTC) is an acceptable alternate to Direct Torque Control (DTC) of induction motors. The limitation of classical PTC is selection of weighting factor, improper selection of weighting factors lead to distortions in current, voltage, high torque and flux ripple. In classical PTC, to reduce torque and flux ripples manual tuning of weighting factors is needed and weighting factors are selected empirically. To circumvent tedious tuning process of weighting factor, this article proposes a new self-tuned PTC algorithm to Open End Winding Induction Motor (OEWIM) drive. OEWIM’s are more popular in electric vehicles, ship propulsion but they require ripple free torque. A new self-tuned PTC algorithm is implemented to OEWIM with multi-level inversion to reduce torque and flux ripples. The effectiveness of proposed PTC algorithm was tested by applying it to multi-level inverter fed OEWIM drive through simulation and experimental verification.http://dx.doi.org/10.1080/23311916.2017.1388206predictive torque controlinduction motor drivesopen end winding inductionmotorself-tuningweighting factormulti-level inversion;direct torque control |
spellingShingle | Kunisetti V. Praveen Kumar K.M. Ravi Eswar Thippiripati Vinay Kumar Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm Cogent Engineering predictive torque control induction motor drives open end winding induction motor self-tuning weighting factor multi-level inversion; direct torque control |
title | Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm |
title_full | Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm |
title_fullStr | Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm |
title_full_unstemmed | Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm |
title_short | Hardware implementation of Predictive Torque Controlled Open-end winding induction motor drive with self-tuning algorithm |
title_sort | hardware implementation of predictive torque controlled open end winding induction motor drive with self tuning algorithm |
topic | predictive torque control induction motor drives open end winding induction motor self-tuning weighting factor multi-level inversion; direct torque control |
url | http://dx.doi.org/10.1080/23311916.2017.1388206 |
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