Auto-Tuning Sliding Mode Contol For Induction Motor Drives
Sliding mode control offers great potential to deal with uncertainties such as parameter variation and external load disturbances in controlling induction motor drives. The main obstacle of conventional sliding mode control is the presence of chattering phenomenon. It is known that the large switc...
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2017
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my.utem.eprints.182862021-07-20T21:18:02Z http://eprints.utem.edu.my/id/eprint/18286/ Auto-Tuning Sliding Mode Contol For Induction Motor Drives Patakor, Fizatul Aini Jantan, Normah Sulaiman, Marizan Salleh, Zulhisyam T Technology (General) TJ Mechanical engineering and machinery Sliding mode control offers great potential to deal with uncertainties such as parameter variation and external load disturbances in controlling induction motor drives. The main obstacle of conventional sliding mode control is the presence of chattering phenomenon. It is known that the large switching gain of sliding mode control is proportional to the chattering level, and normally a large switching gain is applied to handle the uncertainties. In this paper, this chattering phenomenon is significantly reduced by a newly developed algorithm. The control algorithm incorporates the adjustment of switching gain value and variation of the boundary layer to replace the discontinuous function in conventional sliding mode control. As a result, the boundary layer and the switching gain will change in the presence of uncertainties and load disturbances. The experimental results show the effectiveness of the proposed sliding mode control is superior in reducing the chattering phenomenon and handling the external load disturbances. Computer Science and Electronic Engineering (CEEC), 2016 8th 2017-01 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/18286/2/marizan_54.pdf Patakor, Fizatul Aini and Jantan, Normah and Sulaiman, Marizan and Salleh, Zulhisyam (2017) Auto-Tuning Sliding Mode Contol For Induction Motor Drives. Ieee Xplore. pp. 77-82. ISSN - DOI: 10.1109/CEEC.2016.7835892 10.1109/CEEC.2016.7835892 |
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T Technology (General) TJ Mechanical engineering and machinery Patakor, Fizatul Aini Jantan, Normah Sulaiman, Marizan Salleh, Zulhisyam Auto-Tuning Sliding Mode Contol For Induction Motor Drives |
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Sliding mode control offers great potential to deal with uncertainties such as parameter variation and external load
disturbances in controlling induction motor drives. The main
obstacle of conventional sliding mode control is the presence of chattering phenomenon. It is known that the large switching gain of sliding mode control is proportional to the chattering level, and normally a large switching gain is applied to handle the uncertainties. In this paper, this chattering phenomenon is significantly reduced by a newly developed algorithm. The control algorithm incorporates the adjustment of switching gain
value and variation of the boundary layer to replace the
discontinuous function in conventional sliding mode control. As a result, the boundary layer and the switching gain will change in the presence of uncertainties and load disturbances. The experimental results show the effectiveness of the proposed sliding mode control is superior in reducing the chattering phenomenon and handling the external load disturbances. |
format |
Article |
author |
Patakor, Fizatul Aini Jantan, Normah Sulaiman, Marizan Salleh, Zulhisyam |
author_facet |
Patakor, Fizatul Aini Jantan, Normah Sulaiman, Marizan Salleh, Zulhisyam |
author_sort |
Patakor, Fizatul Aini |
title |
Auto-Tuning Sliding Mode Contol For Induction Motor Drives |
title_short |
Auto-Tuning Sliding Mode Contol For Induction Motor Drives |
title_full |
Auto-Tuning Sliding Mode Contol For Induction Motor Drives |
title_fullStr |
Auto-Tuning Sliding Mode Contol For Induction Motor Drives |
title_full_unstemmed |
Auto-Tuning Sliding Mode Contol For Induction Motor Drives |
title_sort |
auto-tuning sliding mode contol for induction motor drives |
publisher |
Computer Science and Electronic Engineering (CEEC), 2016 8th |
publishDate |
2017 |
url |
http://eprints.utem.edu.my/id/eprint/18286/2/marizan_54.pdf http://eprints.utem.edu.my/id/eprint/18286/ |
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1706960912847470592 |