Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor

A novel synchronization modulation technology based on flux trajectory tracking control was presented to resolve the high PWM harmonic problem because of using low switching frequency inverter for high power AC driving system. The optimum switching angles were got off-line according to the principle...

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Main Authors: LIU Yong, MEI Wenqing, GAN Weiwei
Format: Article
Language:zho
Published: Editorial Department of Electric Drive for Locomotives 2016-01-01
Series:机车电传动
Subjects:
Online Access:http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2016.02.003
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author LIU Yong
MEI Wenqing
GAN Weiwei
author_facet LIU Yong
MEI Wenqing
GAN Weiwei
author_sort LIU Yong
collection DOAJ
description A novel synchronization modulation technology based on flux trajectory tracking control was presented to resolve the high PWM harmonic problem because of using low switching frequency inverter for high power AC driving system. The optimum switching angles were got off-line according to the principle that the total current harmonic of motor was least, which derived the trajectory of stator flux. While the system was in working state, the flux threshold of special position was calculated real-timely and the stator flux estimated was compared with the flux threshold, so the synchronization modulation based on stator flux trajectory tracking control was realized. The simulation and experiment showed that the method presented was feasible and right.
format Article
id doaj-art-010b78bd4bb343219f4d4e7f8bfb79ab
institution Kabale University
issn 1000-128X
language zho
publishDate 2016-01-01
publisher Editorial Department of Electric Drive for Locomotives
record_format Article
series 机车电传动
spelling doaj-art-010b78bd4bb343219f4d4e7f8bfb79ab2025-08-20T03:49:02ZzhoEditorial Department of Electric Drive for Locomotives机车电传动1000-128X2016-01-0191420918439Research on Stator Flux Trajectory Tracking Control for Induction Traction MotorLIU YongMEI WenqingGAN WeiweiA novel synchronization modulation technology based on flux trajectory tracking control was presented to resolve the high PWM harmonic problem because of using low switching frequency inverter for high power AC driving system. The optimum switching angles were got off-line according to the principle that the total current harmonic of motor was least, which derived the trajectory of stator flux. While the system was in working state, the flux threshold of special position was calculated real-timely and the stator flux estimated was compared with the flux threshold, so the synchronization modulation based on stator flux trajectory tracking control was realized. The simulation and experiment showed that the method presented was feasible and right.http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2016.02.003induction motorlow switching frequencyflux trajectory tracking controlsynchronous modulation
spellingShingle LIU Yong
MEI Wenqing
GAN Weiwei
Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor
机车电传动
induction motor
low switching frequency
flux trajectory tracking control
synchronous modulation
title Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor
title_full Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor
title_fullStr Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor
title_full_unstemmed Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor
title_short Research on Stator Flux Trajectory Tracking Control for Induction Traction Motor
title_sort research on stator flux trajectory tracking control for induction traction motor
topic induction motor
low switching frequency
flux trajectory tracking control
synchronous modulation
url http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2016.02.003
work_keys_str_mv AT liuyong researchonstatorfluxtrajectorytrackingcontrolforinductiontractionmotor
AT meiwenqing researchonstatorfluxtrajectorytrackingcontrolforinductiontractionmotor
AT ganweiwei researchonstatorfluxtrajectorytrackingcontrolforinductiontractionmotor