Sector determination for SVPWM based four‐switch three‐phase VSI

Sector determination for a normalised space vector pulse width modulation (SVPWM) scheme is proposed for four‐switch three‐phase (FSTP) voltage source inverter (VSI) by using already available stationary reference frame stator voltages without requiring complex trigonometric calculations. The propos...

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Main Authors: O.C. Kivanc, S.B. Ozturk
Format: Article
Language:English
Published: Wiley 2017-03-01
Series:Electronics Letters
Subjects:
Online Access:https://doi.org/10.1049/el.2016.3711
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author O.C. Kivanc
S.B. Ozturk
author_facet O.C. Kivanc
S.B. Ozturk
author_sort O.C. Kivanc
collection DOAJ
description Sector determination for a normalised space vector pulse width modulation (SVPWM) scheme is proposed for four‐switch three‐phase (FSTP) voltage source inverter (VSI) by using already available stationary reference frame stator voltages without requiring complex trigonometric calculations. The proposed method has been simulated by using MATLAB/Simulink and implemented using a VSI with a TMS320F28335 floating‐point digital signal processing. Simulation and experimental results show the feasibility and effectiveness of the proposed SVPWM algorithm for FSTP inverter.
format Article
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institution Kabale University
issn 0013-5194
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language English
publishDate 2017-03-01
publisher Wiley
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series Electronics Letters
spelling doaj-art-aa98276743f249d7927782917dd3567d2025-02-05T12:30:43ZengWileyElectronics Letters0013-51941350-911X2017-03-0153534334510.1049/el.2016.3711Sector determination for SVPWM based four‐switch three‐phase VSIO.C. Kivanc0S.B. Ozturk1College of Engineering, Department of Electrical and Electronics EngineeringOkan UniversityIstanbul34959TurkeyCollege of Engineering, Department of Electrical and Electronics EngineeringOkan UniversityIstanbul34959TurkeySector determination for a normalised space vector pulse width modulation (SVPWM) scheme is proposed for four‐switch three‐phase (FSTP) voltage source inverter (VSI) by using already available stationary reference frame stator voltages without requiring complex trigonometric calculations. The proposed method has been simulated by using MATLAB/Simulink and implemented using a VSI with a TMS320F28335 floating‐point digital signal processing. Simulation and experimental results show the feasibility and effectiveness of the proposed SVPWM algorithm for FSTP inverter.https://doi.org/10.1049/el.2016.3711sector determinationSVPWM schemenormalised space vector pulse width modulation schemefour‐switch three‐phase VSIFSTP voltage source inverterstationary reference frame stator voltages
spellingShingle O.C. Kivanc
S.B. Ozturk
Sector determination for SVPWM based four‐switch three‐phase VSI
Electronics Letters
sector determination
SVPWM scheme
normalised space vector pulse width modulation scheme
four‐switch three‐phase VSI
FSTP voltage source inverter
stationary reference frame stator voltages
title Sector determination for SVPWM based four‐switch three‐phase VSI
title_full Sector determination for SVPWM based four‐switch three‐phase VSI
title_fullStr Sector determination for SVPWM based four‐switch three‐phase VSI
title_full_unstemmed Sector determination for SVPWM based four‐switch three‐phase VSI
title_short Sector determination for SVPWM based four‐switch three‐phase VSI
title_sort sector determination for svpwm based four switch three phase vsi
topic sector determination
SVPWM scheme
normalised space vector pulse width modulation scheme
four‐switch three‐phase VSI
FSTP voltage source inverter
stationary reference frame stator voltages
url https://doi.org/10.1049/el.2016.3711
work_keys_str_mv AT ockivanc sectordeterminationforsvpwmbasedfourswitchthreephasevsi
AT sbozturk sectordeterminationforsvpwmbasedfourswitchthreephasevsi