Speed drive based on torque slip characteristic of the single phase induction motor

Most of the researches for adjustable speed drive focused on voltage amplitude control. However, its only control speed in the constraint limits. Adjustable frequency drives have not been widely used with single-phase induction motors. The scalar control law used for many three-phase inductions moto...

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Main Authors: Auzani , Jidin, Jurifa , Mat Lazi, Fazli, Patkar, Aida Fazliana , Abdul Kadir, Mohd Ariff , Mat Hanafiah, Abdul Rahim , Abdullah
Format: Conference or Workshop Item
Language:English
Published: 2006
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Online Access:http://eprints.utem.edu.my/id/eprint/15152/1/Speed%20drive%20based%20on%20torque%20slip%20characteristic%20of%20the%20single%20phase%20induction%20motor215.pdf
http://eprints.utem.edu.my/id/eprint/15152/
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spelling my.utem.eprints.151522015-10-29T08:13:51Z http://eprints.utem.edu.my/id/eprint/15152/ Speed drive based on torque slip characteristic of the single phase induction motor Auzani , Jidin Jurifa , Mat Lazi Fazli, Patkar Aida Fazliana , Abdul Kadir Mohd Ariff , Mat Hanafiah Abdul Rahim , Abdullah TK Electrical engineering. Electronics Nuclear engineering Most of the researches for adjustable speed drive focused on voltage amplitude control. However, its only control speed in the constraint limits. Adjustable frequency drives have not been widely used with single-phase induction motors. The scalar control law used for many three-phase inductions motor cannot be used in all operating regimes of the single-phase motor. Calculations show that the slip of the single-phase induction motor is not constant with changes in frequency at a constant load torque. A constant 'volts per hertz' law is found to give approximate rated torque over a portion of the upper speed range, but the maximum available torque decays rapidly below 50% of the base frequency. This paper aims to study the behavior of the single phase induction motor's torque and slip characteristic under variable frequency operation. By holding the level of magnetization constant, a control law can be achieved. This method is implemented for the practical adjustable speed of the single-phase induction motor. If time permit, the final draft paper includes the practical experimental results to compare the simulation results in order to achieve satisfactory agreement for torque and slip behavior of single-phase induction motors driven from variable frequency supplies 2006 Conference or Workshop Item PeerReviewed text en http://eprints.utem.edu.my/id/eprint/15152/1/Speed%20drive%20based%20on%20torque%20slip%20characteristic%20of%20the%20single%20phase%20induction%20motor215.pdf Auzani , Jidin and Jurifa , Mat Lazi and Fazli, Patkar and Aida Fazliana , Abdul Kadir and Mohd Ariff , Mat Hanafiah and Abdul Rahim , Abdullah (2006) Speed drive based on torque slip characteristic of the single phase induction motor. In: International Conference on Power Electronics and Drives Systems, 2005. PEDS 2005. , 18 - 20 Disember 2006, Kuala Lumpur. (Submitted)
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Auzani , Jidin
Jurifa , Mat Lazi
Fazli, Patkar
Aida Fazliana , Abdul Kadir
Mohd Ariff , Mat Hanafiah
Abdul Rahim , Abdullah
Speed drive based on torque slip characteristic of the single phase induction motor
description Most of the researches for adjustable speed drive focused on voltage amplitude control. However, its only control speed in the constraint limits. Adjustable frequency drives have not been widely used with single-phase induction motors. The scalar control law used for many three-phase inductions motor cannot be used in all operating regimes of the single-phase motor. Calculations show that the slip of the single-phase induction motor is not constant with changes in frequency at a constant load torque. A constant 'volts per hertz' law is found to give approximate rated torque over a portion of the upper speed range, but the maximum available torque decays rapidly below 50% of the base frequency. This paper aims to study the behavior of the single phase induction motor's torque and slip characteristic under variable frequency operation. By holding the level of magnetization constant, a control law can be achieved. This method is implemented for the practical adjustable speed of the single-phase induction motor. If time permit, the final draft paper includes the practical experimental results to compare the simulation results in order to achieve satisfactory agreement for torque and slip behavior of single-phase induction motors driven from variable frequency supplies
format Conference or Workshop Item
author Auzani , Jidin
Jurifa , Mat Lazi
Fazli, Patkar
Aida Fazliana , Abdul Kadir
Mohd Ariff , Mat Hanafiah
Abdul Rahim , Abdullah
author_facet Auzani , Jidin
Jurifa , Mat Lazi
Fazli, Patkar
Aida Fazliana , Abdul Kadir
Mohd Ariff , Mat Hanafiah
Abdul Rahim , Abdullah
author_sort Auzani , Jidin
title Speed drive based on torque slip characteristic of the single phase induction motor
title_short Speed drive based on torque slip characteristic of the single phase induction motor
title_full Speed drive based on torque slip characteristic of the single phase induction motor
title_fullStr Speed drive based on torque slip characteristic of the single phase induction motor
title_full_unstemmed Speed drive based on torque slip characteristic of the single phase induction motor
title_sort speed drive based on torque slip characteristic of the single phase induction motor
publishDate 2006
url http://eprints.utem.edu.my/id/eprint/15152/1/Speed%20drive%20based%20on%20torque%20slip%20characteristic%20of%20the%20single%20phase%20induction%20motor215.pdf
http://eprints.utem.edu.my/id/eprint/15152/
_version_ 1665905633195458560
score 13.160551