Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer

For the problem of low control performance of Bearingless Induction Motor (BIM) control system in the presence of large load disturbance, a novel load torque sliding mode observer is proposed on the basis of establishing sliding mode speed control system. The load observer chooses the speed and load...

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Main Authors: Zebin Yang, Ling Wan, Xiaodong Sun, Lin Chen, Zheng Chen
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Journal of Sensors
Online Access:http://dx.doi.org/10.1155/2016/8567429
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spelling doaj-fe2711a6202d478c97e669864be038392020-11-24T20:57:47ZengHindawi LimitedJournal of Sensors1687-725X1687-72682016-01-01201610.1155/2016/85674298567429Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque ObserverZebin Yang0Ling Wan1Xiaodong Sun2Lin Chen3Zheng Chen4School of Electrical and Information Engineering, Jiangsu University, Zhenjiang 212013, ChinaSchool of Electrical and Information Engineering, Jiangsu University, Zhenjiang 212013, ChinaAutomotive Engineering Research Institute, Jiangsu University, Zhenjiang 212013, ChinaSchool of Electrical and Information Engineering, Jiangsu University, Zhenjiang 212013, ChinaSchool of Electrical and Information Engineering, Jiangsu University, Zhenjiang 212013, ChinaFor the problem of low control performance of Bearingless Induction Motor (BIM) control system in the presence of large load disturbance, a novel load torque sliding mode observer is proposed on the basis of establishing sliding mode speed control system. The load observer chooses the speed and load torque of the BIM control system as the observed objects, uses the speed error to design the integral sliding mode surface, and adds the low-pass filter to reduce the torque observation error. Meanwhile, the output of the load torque is used as the feedforward compensation for the control system, which can provide the required current for load changes and reduce the adverse influence of disturbance on system performance. Besides, considering that the load changes lead to the varying rotational inertia, the integral identification method is adopted to identify the rotational inertia of BIM, and the rotational inertia can be updated to the load observer in real time. The simulation and experiment results all show that the proposed method can track load torque accurately, improve the ability to resist disturbances, and ameliorate the operation quality of BIM control system. The chattering of sliding mode also is suppressed effectively.http://dx.doi.org/10.1155/2016/8567429
collection DOAJ
language English
format Article
sources DOAJ
author Zebin Yang
Ling Wan
Xiaodong Sun
Lin Chen
Zheng Chen
spellingShingle Zebin Yang
Ling Wan
Xiaodong Sun
Lin Chen
Zheng Chen
Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer
Journal of Sensors
author_facet Zebin Yang
Ling Wan
Xiaodong Sun
Lin Chen
Zheng Chen
author_sort Zebin Yang
title Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer
title_short Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer
title_full Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer
title_fullStr Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer
title_full_unstemmed Sliding Mode Control for Bearingless Induction Motor Based on a Novel Load Torque Observer
title_sort sliding mode control for bearingless induction motor based on a novel load torque observer
publisher Hindawi Limited
series Journal of Sensors
issn 1687-725X
1687-7268
publishDate 2016-01-01
description For the problem of low control performance of Bearingless Induction Motor (BIM) control system in the presence of large load disturbance, a novel load torque sliding mode observer is proposed on the basis of establishing sliding mode speed control system. The load observer chooses the speed and load torque of the BIM control system as the observed objects, uses the speed error to design the integral sliding mode surface, and adds the low-pass filter to reduce the torque observation error. Meanwhile, the output of the load torque is used as the feedforward compensation for the control system, which can provide the required current for load changes and reduce the adverse influence of disturbance on system performance. Besides, considering that the load changes lead to the varying rotational inertia, the integral identification method is adopted to identify the rotational inertia of BIM, and the rotational inertia can be updated to the load observer in real time. The simulation and experiment results all show that the proposed method can track load torque accurately, improve the ability to resist disturbances, and ameliorate the operation quality of BIM control system. The chattering of sliding mode also is suppressed effectively.
url http://dx.doi.org/10.1155/2016/8567429
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AT lingwan slidingmodecontrolforbearinglessinductionmotorbasedonanovelloadtorqueobserver
AT xiaodongsun slidingmodecontrolforbearinglessinductionmotorbasedonanovelloadtorqueobserver
AT linchen slidingmodecontrolforbearinglessinductionmotorbasedonanovelloadtorqueobserver
AT zhengchen slidingmodecontrolforbearinglessinductionmotorbasedonanovelloadtorqueobserver
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