Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor

Abstract The proposed technology deals with the reduction in torque ripple of five‐phase induction motor. The machine is controlled by direct torque control technique and fed by three‐level five‐phase inverter (TL‐FPI). In the fraternity of multiphase induction motor, five phase is the most research...

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Main Author: Yogesh Tatte
Format: Article
Language:English
Published: Wiley 2021-07-01
Series:IET Power Electronics
Online Access:https://doi.org/10.1049/pel2.12148
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spelling doaj-8aa4a3899b4147a1b51ab10c968ae4622021-08-02T08:25:11ZengWileyIET Power Electronics1755-45351755-45432021-07-011491713172310.1049/pel2.12148Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motorYogesh Tatte0Thapar Institute of Engineering and Technology Electrical and Instrumentation Engineering Department Patiala IndiaAbstract The proposed technology deals with the reduction in torque ripple of five‐phase induction motor. The machine is controlled by direct torque control technique and fed by three‐level five‐phase inverter (TL‐FPI). In the fraternity of multiphase induction motor, five phase is the most researched drive, considering complexity of control mechanism and advantages which multiphase machine has offered. The selection of TL‐FPI is based on availability of more voltage vectors (243) than two‐level five‐phase inverter (32). The 41 voltage vectors are employed out of 243 based on simplicity and advantages of multiphase machine. The selected vectors are operated through modified seven‐level torque comparator. An increase in levels of the comparator restrains the ripple in a predefined boundary. Here, modification in the predefined boundary of the comparator is suggested which allows the utilization of optimal voltage vectors. According to modification, zero voltage vectors are replaced with small active vectors when actual torque is lower than its reference value. To substantiate the claim various results of simulation and experimentation are given.https://doi.org/10.1049/pel2.12148
collection DOAJ
language English
format Article
sources DOAJ
author Yogesh Tatte
spellingShingle Yogesh Tatte
Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor
IET Power Electronics
author_facet Yogesh Tatte
author_sort Yogesh Tatte
title Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor
title_short Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor
title_full Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor
title_fullStr Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor
title_full_unstemmed Torque ripple minimization with modified comparator in DTC based three‐level five‐phase inverter fed five‐phase induction motor
title_sort torque ripple minimization with modified comparator in dtc based three‐level five‐phase inverter fed five‐phase induction motor
publisher Wiley
series IET Power Electronics
issn 1755-4535
1755-4543
publishDate 2021-07-01
description Abstract The proposed technology deals with the reduction in torque ripple of five‐phase induction motor. The machine is controlled by direct torque control technique and fed by three‐level five‐phase inverter (TL‐FPI). In the fraternity of multiphase induction motor, five phase is the most researched drive, considering complexity of control mechanism and advantages which multiphase machine has offered. The selection of TL‐FPI is based on availability of more voltage vectors (243) than two‐level five‐phase inverter (32). The 41 voltage vectors are employed out of 243 based on simplicity and advantages of multiphase machine. The selected vectors are operated through modified seven‐level torque comparator. An increase in levels of the comparator restrains the ripple in a predefined boundary. Here, modification in the predefined boundary of the comparator is suggested which allows the utilization of optimal voltage vectors. According to modification, zero voltage vectors are replaced with small active vectors when actual torque is lower than its reference value. To substantiate the claim various results of simulation and experimentation are given.
url https://doi.org/10.1049/pel2.12148
work_keys_str_mv AT yogeshtatte torquerippleminimizationwithmodifiedcomparatorindtcbasedthreelevelfivephaseinverterfedfivephaseinductionmotor
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