Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer

In this paper, a new design of the state observer is proposed to reduce the unstable low-speed region of the adaptive full-order observer (AFO) based speed sensorless speed control of induction motors (IM). The proposed state observer is designed in z-domain rather than in s-domain following the pol...

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Main Authors: Ngoc-Duc Nguyen, Nguyen Ngoc Ngoc Nam, Changwoo Yoon, Young Il Lee
Format: Bài trích
Language:eng
Published: IEEE Transactions on Industrial Electronics 2021
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Online Access:https://ieeexplore.ieee.org/document/9479743
https://dlib.phenikaa-uni.edu.vn/handle/PNK/2858
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spelling oai:localhost:PNK-28582022-08-17T05:54:48Z Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer Ngoc-Duc Nguyen Nguyen Ngoc Ngoc Nam Changwoo Yoon Young Il Lee adaptive full-order observer induction motor speed sensorless model predictive torque control In this paper, a new design of the state observer is proposed to reduce the unstable low-speed region of the adaptive full-order observer (AFO) based speed sensorless speed control of induction motors (IM). The proposed state observer is designed in z-domain rather than in s-domain following the pole-placement approach. The convergence rate of the proposed observer can be made faster than that of the IM poles without extra oscillation effects and the unstable low-speed region of AFO can be reduced to the zero-synchronous-frequency (ZSF) line. Also, a modified adaptation law of the AFO is derived to estimate the rotor speed. Based on the modified AFO, a continuous control set model predictive control (CCS-MPC) is designed for the inner-loop torque control. The cost function of the CCS-MPC is made of the predicted tracking errors on the state and control input. Finally, the dual-loop speed sensorless speed control using the modified AFO and CCS-MPC is presented in simulations and experiments. 2021-09-14T07:14:54Z 2021-09-14T07:14:54Z 2021 Bài trích https://ieeexplore.ieee.org/document/9479743 https://dlib.phenikaa-uni.edu.vn/handle/PNK/2858 10.1109/TIE.2021.3094493 eng IEEE Transactions on Industrial Electronics
institution Digital Phenikaa
collection Digital Phenikaa
language eng
topic adaptive full-order observer
induction motor
speed sensorless model predictive torque control
spellingShingle adaptive full-order observer
induction motor
speed sensorless model predictive torque control
Ngoc-Duc Nguyen
Nguyen Ngoc Ngoc Nam
Changwoo Yoon
Young Il Lee
Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer
description In this paper, a new design of the state observer is proposed to reduce the unstable low-speed region of the adaptive full-order observer (AFO) based speed sensorless speed control of induction motors (IM). The proposed state observer is designed in z-domain rather than in s-domain following the pole-placement approach. The convergence rate of the proposed observer can be made faster than that of the IM poles without extra oscillation effects and the unstable low-speed region of AFO can be reduced to the zero-synchronous-frequency (ZSF) line. Also, a modified adaptation law of the AFO is derived to estimate the rotor speed. Based on the modified AFO, a continuous control set model predictive control (CCS-MPC) is designed for the inner-loop torque control. The cost function of the CCS-MPC is made of the predicted tracking errors on the state and control input. Finally, the dual-loop speed sensorless speed control using the modified AFO and CCS-MPC is presented in simulations and experiments.
format Bài trích
author Ngoc-Duc Nguyen
Nguyen Ngoc Ngoc Nam
Changwoo Yoon
Young Il Lee
author_facet Ngoc-Duc Nguyen
Nguyen Ngoc Ngoc Nam
Changwoo Yoon
Young Il Lee
author_sort Ngoc-Duc Nguyen
title Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer
title_short Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer
title_full Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer
title_fullStr Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer
title_full_unstemmed Speed Sensorless Model Predictive Torque Control of Induction Motors using A Modified Adaptive Full-order Observer
title_sort speed sensorless model predictive torque control of induction motors using a modified adaptive full-order observer
publisher IEEE Transactions on Industrial Electronics
publishDate 2021
url https://ieeexplore.ieee.org/document/9479743
https://dlib.phenikaa-uni.edu.vn/handle/PNK/2858
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score 8.891695