Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences

For efficient operation of the squirrel cage induction motor, the flux must be properly adjusted according to the torque. However, in such variable flux operation, the performance of torque control is limited by the flux control because it is not possible to measure and control the rotor current tha...

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Main Author: Yongsu Han
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/10/15/1845
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spelling doaj-37c42b2ec7834ee3b24c510ebecbdef62021-08-06T15:21:20ZengMDPI AGElectronics2079-92922021-07-01101845184510.3390/electronics10151845Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling InterferencesYongsu Han0Department of Electronics Engineering, Myongji University, Yongin 17058, KoreaFor efficient operation of the squirrel cage induction motor, the flux must be properly adjusted according to the torque. However, in such variable flux operation, the performance of torque control is limited by the flux control because it is not possible to measure and control the rotor current that affects the flux. On the contrary, in a double inverter-fed wound machine (DIFWM), the inverter is connected to the rotor side, as well as the stator side, and the rotor current can be controlled. This controllability of the rotor currents improves the operation performance of a DIFWM. This article presents the decoupling current control method of a DIFWM for fast flux and torque control. Since the rotor flux is directly calculated by the stator and rotor currents, the bandwidth of the flux control can be improved to the bandwidth of the current controller, which means that the torque control also has the same bandwidth. In this article, a detailed current controller design method with a DIFWM feed-forwarding decoupling method to eliminate all coupling interferences is proposed. The simulation and experimental results regarding the DIFWM are presented to verify the torque and flux control performance of the proposed control method.https://www.mdpi.com/2079-9292/10/15/1845double inverter-fed wound machine (DIFWM)decoupling controltorque controlflux control
collection DOAJ
language English
format Article
sources DOAJ
author Yongsu Han
spellingShingle Yongsu Han
Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
Electronics
double inverter-fed wound machine (DIFWM)
decoupling control
torque control
flux control
author_facet Yongsu Han
author_sort Yongsu Han
title Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
title_short Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
title_full Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
title_fullStr Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
title_full_unstemmed Fast Flux and Torque Control of a Double Inverter-Fed Wound Machine Considering All Coupling Interferences
title_sort fast flux and torque control of a double inverter-fed wound machine considering all coupling interferences
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2021-07-01
description For efficient operation of the squirrel cage induction motor, the flux must be properly adjusted according to the torque. However, in such variable flux operation, the performance of torque control is limited by the flux control because it is not possible to measure and control the rotor current that affects the flux. On the contrary, in a double inverter-fed wound machine (DIFWM), the inverter is connected to the rotor side, as well as the stator side, and the rotor current can be controlled. This controllability of the rotor currents improves the operation performance of a DIFWM. This article presents the decoupling current control method of a DIFWM for fast flux and torque control. Since the rotor flux is directly calculated by the stator and rotor currents, the bandwidth of the flux control can be improved to the bandwidth of the current controller, which means that the torque control also has the same bandwidth. In this article, a detailed current controller design method with a DIFWM feed-forwarding decoupling method to eliminate all coupling interferences is proposed. The simulation and experimental results regarding the DIFWM are presented to verify the torque and flux control performance of the proposed control method.
topic double inverter-fed wound machine (DIFWM)
decoupling control
torque control
flux control
url https://www.mdpi.com/2079-9292/10/15/1845
work_keys_str_mv AT yongsuhan fastfluxandtorquecontrolofadoubleinverterfedwoundmachineconsideringallcouplinginterferences
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