Maximum torque-per-amp tracking control of saturated induction motors

An improved maximum torque per Ampere (MTPA) controller for induction motor (IM) drives is presented. The proposed MTPA field oriented controller guarantees asymptotic torque tracking of smooth reference trajectories and maximises the torque per Ampere ratio when the developed torque is constant or...

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Main Authors: Peresada, Sergei, Kovbasa, Serhii, Dymko, Serhii, Bozhko, Sergiy
Format: Conference or Workshop Item
Language:English
Published: 2017
Online Access:https://eprints.nottingham.ac.uk/55030/
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author Peresada, Sergei
Kovbasa, Serhii
Dymko, Serhii
Bozhko, Sergiy
author_facet Peresada, Sergei
Kovbasa, Serhii
Dymko, Serhii
Bozhko, Sergiy
author_sort Peresada, Sergei
building Nottingham Research Data Repository
collection Online Access
description An improved maximum torque per Ampere (MTPA) controller for induction motor (IM) drives is presented. The proposed MTPA field oriented controller guarantees asymptotic torque tracking of smooth reference trajectories and maximises the torque per Ampere ratio when the developed torque is constant or slow varying. Due to use closed loop flux observer and high-gain PI controllers for both stator current components the proposed solution provides improved robustness with respect to parameters variations and inverter non-idealities. Experimental tests prove the accuracy of the proposed control over a full torque range. In addition, a higher torque per Ampere ratio is achieved together with an improved efficiency of electromechanical energy conversion.
first_indexed 2025-11-14T20:30:22Z
format Conference or Workshop Item
id nottingham-55030
institution University of Nottingham Malaysia Campus
institution_category Local University
language English
last_indexed 2025-11-14T20:30:22Z
publishDate 2017
recordtype eprints
repository_type Digital Repository
spelling nottingham-550302018-09-18T10:21:52Z https://eprints.nottingham.ac.uk/55030/ Maximum torque-per-amp tracking control of saturated induction motors Peresada, Sergei Kovbasa, Serhii Dymko, Serhii Bozhko, Sergiy An improved maximum torque per Ampere (MTPA) controller for induction motor (IM) drives is presented. The proposed MTPA field oriented controller guarantees asymptotic torque tracking of smooth reference trajectories and maximises the torque per Ampere ratio when the developed torque is constant or slow varying. Due to use closed loop flux observer and high-gain PI controllers for both stator current components the proposed solution provides improved robustness with respect to parameters variations and inverter non-idealities. Experimental tests prove the accuracy of the proposed control over a full torque range. In addition, a higher torque per Ampere ratio is achieved together with an improved efficiency of electromechanical energy conversion. 2017-11-15 Conference or Workshop Item PeerReviewed application/pdf en https://eprints.nottingham.ac.uk/55030/1/Maximum%20torque-per-amp%20tracking%20control%20of%20saturated%20induction%20motors.pdf Peresada, Sergei, Kovbasa, Serhii, Dymko, Serhii and Bozhko, Sergiy (2017) Maximum torque-per-amp tracking control of saturated induction motors. In: 2017 International Conference on Modern Electrical and Energy Systems (MEES), 15-17 November 2017, Kremenchuk, Ukraine. https://ieeexplore.ieee.org/document/8248955/ 10.1109/mees.2017.8248955 10.1109/mees.2017.8248955 10.1109/mees.2017.8248955
spellingShingle Peresada, Sergei
Kovbasa, Serhii
Dymko, Serhii
Bozhko, Sergiy
Maximum torque-per-amp tracking control of saturated induction motors
title Maximum torque-per-amp tracking control of saturated induction motors
title_full Maximum torque-per-amp tracking control of saturated induction motors
title_fullStr Maximum torque-per-amp tracking control of saturated induction motors
title_full_unstemmed Maximum torque-per-amp tracking control of saturated induction motors
title_short Maximum torque-per-amp tracking control of saturated induction motors
title_sort maximum torque-per-amp tracking control of saturated induction motors
url https://eprints.nottingham.ac.uk/55030/
https://eprints.nottingham.ac.uk/55030/
https://eprints.nottingham.ac.uk/55030/