Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology

The double salient pole structure of Switched Reluctance Motor (SRM) makes its electromagnetic field exist nonlinear saturation characteristics, resulting in its large torque pulsation in operation, so it is difficult  to achieve speed regulation smoothly by traditional control methods. In view of...

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Main Authors: Huixiu Li, Qingtao Wei, Liying Zhang, Nan Li
Format: Article
Language:English
Published: European Alliance for Innovation (EAI) 2024-04-01
Series:EAI Endorsed Transactions on Energy Web
Subjects:
Online Access:https://publications.eai.eu/index.php/ew/article/view/5802
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author Huixiu Li
Qingtao Wei
Liying Zhang
Nan Li
author_facet Huixiu Li
Qingtao Wei
Liying Zhang
Nan Li
author_sort Huixiu Li
collection DOAJ
description The double salient pole structure of Switched Reluctance Motor (SRM) makes its electromagnetic field exist nonlinear saturation characteristics, resulting in its large torque pulsation in operation, so it is difficult  to achieve speed regulation smoothly by traditional control methods. In view of this problem, a sliding mode control strategy which is based on synchronous transmission technology was proposed.Firstly, the basic structure of switched reluctance motor was analyzed, and the mathematical model of mechanical motion of switched reluctance motor was established. Secondly, an improved sliding mode controller which is based on synchronous signal transmission technology was designed by analyzing the reason of large torque ripple of switched reluctance motor, and the stability of the system was proved. Finally, simulation is used to verify the effectiveness of the control strategy.Compared with the traditional PID (Proportional Integral Differential) control algorithm, this control technology not only suppresses the SRM torque ripple effectively , but also makes the sliding mode controller output the precise target electromagnetic torque quickly by increasing the control variables. The results of research indicate that this design can not only restrain the torque ripple effectively, but also adjust the convergence speed and overshoot of the controller by adjusting the design parameters.
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spelling doaj.art-6a9793ef614e43c8bc70ae27c5d765282024-04-16T19:02:15ZengEuropean Alliance for Innovation (EAI)EAI Endorsed Transactions on Energy Web2032-944X2024-04-011110.4108/ew.5802Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization TechnologyHuixiu Li0Qingtao Wei1Liying Zhang2Nan Li3Dalian University of Science and TechnologyDalian University of Science and TechnologyDalian University of Science and TechnologyDalian University of Science and Technology The double salient pole structure of Switched Reluctance Motor (SRM) makes its electromagnetic field exist nonlinear saturation characteristics, resulting in its large torque pulsation in operation, so it is difficult  to achieve speed regulation smoothly by traditional control methods. In view of this problem, a sliding mode control strategy which is based on synchronous transmission technology was proposed.Firstly, the basic structure of switched reluctance motor was analyzed, and the mathematical model of mechanical motion of switched reluctance motor was established. Secondly, an improved sliding mode controller which is based on synchronous signal transmission technology was designed by analyzing the reason of large torque ripple of switched reluctance motor, and the stability of the system was proved. Finally, simulation is used to verify the effectiveness of the control strategy.Compared with the traditional PID (Proportional Integral Differential) control algorithm, this control technology not only suppresses the SRM torque ripple effectively , but also makes the sliding mode controller output the precise target electromagnetic torque quickly by increasing the control variables. The results of research indicate that this design can not only restrain the torque ripple effectively, but also adjust the convergence speed and overshoot of the controller by adjusting the design parameters. https://publications.eai.eu/index.php/ew/article/view/5802switched reluctance motorSychronization transmissionSliding mode controlTorque ripple
spellingShingle Huixiu Li
Qingtao Wei
Liying Zhang
Nan Li
Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology
EAI Endorsed Transactions on Energy Web
switched reluctance motor
Sychronization transmission
Sliding mode control
Torque ripple
title Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology
title_full Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology
title_fullStr Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology
title_full_unstemmed Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology
title_short Suppression of Torque Ripple in Switched Reluctance Motors Which is Based on Synchronization Technology
title_sort suppression of torque ripple in switched reluctance motors which is based on synchronization technology
topic switched reluctance motor
Sychronization transmission
Sliding mode control
Torque ripple
url https://publications.eai.eu/index.php/ew/article/view/5802
work_keys_str_mv AT huixiuli suppressionoftorquerippleinswitchedreluctancemotorswhichisbasedonsynchronizationtechnology
AT qingtaowei suppressionoftorquerippleinswitchedreluctancemotorswhichisbasedonsynchronizationtechnology
AT liyingzhang suppressionoftorquerippleinswitchedreluctancemotorswhichisbasedonsynchronizationtechnology
AT nanli suppressionoftorquerippleinswitchedreluctancemotorswhichisbasedonsynchronizationtechnology