A nine-level T-type inverter (9L-TTI) with voltage boost capability

This paper introduces a 9L T-type boost inverter (9L-TTI) based multilevel topology, which generates a nine-level output voltage in the boost mode. This topology uses 12 switching elements alongside less voltage stress and one switched capacitor unit. This is the significant advantage of the mention...

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Main Authors: Firdous Z., Mekhilef S., Mishra N., Mustafa A., Seyedmahmoudian M., Stojcevski A.
Other Authors: 57872541300
Format: Article
Published: John Wiley and Sons Inc 2024
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spelling my.uniten.dspace-345902024-10-14T11:20:54Z A nine-level T-type inverter (9L-TTI) with voltage boost capability Firdous Z. Mekhilef S. Mishra N. Mustafa A. Seyedmahmoudian M. Stojcevski A. 57872541300 57928298500 57213281603 57193692326 55575761400 55884935900 boost converter nearest level control nine-level T-type boost inverter reduced device count switched capacitor Boost converter Cost effectiveness Electric inverters Level control Power quality BOOST converter Boost inverters Inverter-based Multilevel topologies Near level control Nine-level T-type boost inverte Reduced device count Switched capacitor Voltage boost Voltage stress Topology This paper introduces a 9L T-type boost inverter (9L-TTI) based multilevel topology, which generates a nine-level output voltage in the boost mode. This topology uses 12 switching elements alongside less voltage stress and one switched capacitor unit. This is the significant advantage of the mentioned topology. Following the discussion of the advantages of the provided design, a comparative study is conducted. This results in a reduction in device counts, cost-effectiveness, and voltage stress on the devices. For switching scheme, fundamental switching frequency-based modulation is incorporated by having nearest level control (NLC) technique. For proper validation of this work, it is also demonstrated through test results. Here the results are demonstrated at different load conditions, which include resistive and inductive loads. Further, it is demonstrated at different modulation indices and total harmonic distortion (THD) of converter voltage and current for RL-load, is validated from the power quality improvement point. � 2023 The Authors. IET Power Electronics published by John Wiley & Sons Ltd on behalf of The Institution of Engineering and Technology. Article in press 2024-10-14T03:20:54Z 2024-10-14T03:20:54Z 2023 Article 10.1049/pel2.12526 2-s2.0-85161442557 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85161442557&doi=10.1049%2fpel2.12526&partnerID=40&md5=514b0dc38b9773cd2004f640ca551879 https://irepository.uniten.edu.my/handle/123456789/34590 All Open Access Gold Open Access John Wiley and Sons Inc Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic boost converter
nearest level control
nine-level T-type boost inverter
reduced device count
switched capacitor
Boost converter
Cost effectiveness
Electric inverters
Level control
Power quality
BOOST converter
Boost inverters
Inverter-based
Multilevel topologies
Near level control
Nine-level T-type boost inverte
Reduced device count
Switched capacitor
Voltage boost
Voltage stress
Topology
spellingShingle boost converter
nearest level control
nine-level T-type boost inverter
reduced device count
switched capacitor
Boost converter
Cost effectiveness
Electric inverters
Level control
Power quality
BOOST converter
Boost inverters
Inverter-based
Multilevel topologies
Near level control
Nine-level T-type boost inverte
Reduced device count
Switched capacitor
Voltage boost
Voltage stress
Topology
Firdous Z.
Mekhilef S.
Mishra N.
Mustafa A.
Seyedmahmoudian M.
Stojcevski A.
A nine-level T-type inverter (9L-TTI) with voltage boost capability
description This paper introduces a 9L T-type boost inverter (9L-TTI) based multilevel topology, which generates a nine-level output voltage in the boost mode. This topology uses 12 switching elements alongside less voltage stress and one switched capacitor unit. This is the significant advantage of the mentioned topology. Following the discussion of the advantages of the provided design, a comparative study is conducted. This results in a reduction in device counts, cost-effectiveness, and voltage stress on the devices. For switching scheme, fundamental switching frequency-based modulation is incorporated by having nearest level control (NLC) technique. For proper validation of this work, it is also demonstrated through test results. Here the results are demonstrated at different load conditions, which include resistive and inductive loads. Further, it is demonstrated at different modulation indices and total harmonic distortion (THD) of converter voltage and current for RL-load, is validated from the power quality improvement point. � 2023 The Authors. IET Power Electronics published by John Wiley & Sons Ltd on behalf of The Institution of Engineering and Technology.
author2 57872541300
author_facet 57872541300
Firdous Z.
Mekhilef S.
Mishra N.
Mustafa A.
Seyedmahmoudian M.
Stojcevski A.
format Article
author Firdous Z.
Mekhilef S.
Mishra N.
Mustafa A.
Seyedmahmoudian M.
Stojcevski A.
author_sort Firdous Z.
title A nine-level T-type inverter (9L-TTI) with voltage boost capability
title_short A nine-level T-type inverter (9L-TTI) with voltage boost capability
title_full A nine-level T-type inverter (9L-TTI) with voltage boost capability
title_fullStr A nine-level T-type inverter (9L-TTI) with voltage boost capability
title_full_unstemmed A nine-level T-type inverter (9L-TTI) with voltage boost capability
title_sort nine-level t-type inverter (9l-tti) with voltage boost capability
publisher John Wiley and Sons Inc
publishDate 2024
_version_ 1814061128821506048
score 13.222552