Self‐compensation of DC–DC converters under peak current mode control

A new self‐compensation technique is proposed for eliminating subharmonic oscillation and chaotic regimes in dc–dc switching converters under peak current mode control. The proposed method extracts a control signal from the error between the inductor current and a suitable reference and does not req...

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Main Authors: A. El Aroudi, K. Mandal, D. Giaouris, S. Banerjee
Format: Article
Language:English
Published: Wiley 2017-03-01
Series:Electronics Letters
Subjects:
Online Access:https://doi.org/10.1049/el.2016.4082
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author A. El Aroudi
K. Mandal
D. Giaouris
S. Banerjee
author_facet A. El Aroudi
K. Mandal
D. Giaouris
S. Banerjee
author_sort A. El Aroudi
collection DOAJ
description A new self‐compensation technique is proposed for eliminating subharmonic oscillation and chaotic regimes in dc–dc switching converters under peak current mode control. The proposed method extracts a control signal from the error between the inductor current and a suitable reference and does not require an external signal generator as in the conventional ramp compensation scheme. The analytical expressions of the control domain using Filippov method are obtained. Simulation results show that the proposed technique can be implemented using standard analogue devices and can effectively eliminate subharmonic and chaotic oscillations and can ensure a stable operation for a wide range of the duty ratio.
format Article
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institution Kabale University
issn 0013-5194
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language English
publishDate 2017-03-01
publisher Wiley
record_format Article
series Electronics Letters
spelling doaj-art-ca37d6ad38504f4eacd4d5ef4110b3532025-02-05T12:30:43ZengWileyElectronics Letters0013-51941350-911X2017-03-0153534534710.1049/el.2016.4082Self‐compensation of DC–DC converters under peak current mode controlA. El Aroudi0K. Mandal1D. Giaouris2S. Banerjee3GAEI Research group, Departament d'Enginyeria Electrònica, Elèctrica i AutomàticaUniversitat Rovira i VirgiliTarragonaSpainIndian Institute of Science Education and Research – KolkataMohanpur CampusNadia741246West BengalIndiaSchool of Electrical and Electronic EngineeringNewcastle UniversityNewcastle upon TyneUKIndian Institute of Science Education and Research – KolkataMohanpur CampusNadia741246West BengalIndiaA new self‐compensation technique is proposed for eliminating subharmonic oscillation and chaotic regimes in dc–dc switching converters under peak current mode control. The proposed method extracts a control signal from the error between the inductor current and a suitable reference and does not require an external signal generator as in the conventional ramp compensation scheme. The analytical expressions of the control domain using Filippov method are obtained. Simulation results show that the proposed technique can be implemented using standard analogue devices and can effectively eliminate subharmonic and chaotic oscillations and can ensure a stable operation for a wide range of the duty ratio.https://doi.org/10.1049/el.2016.4082peak current mode controlself‐compensation techniquechaotic regimesDC‐DC switching converterscontrol signal extractioninductor current
spellingShingle A. El Aroudi
K. Mandal
D. Giaouris
S. Banerjee
Self‐compensation of DC–DC converters under peak current mode control
Electronics Letters
peak current mode control
self‐compensation technique
chaotic regimes
DC‐DC switching converters
control signal extraction
inductor current
title Self‐compensation of DC–DC converters under peak current mode control
title_full Self‐compensation of DC–DC converters under peak current mode control
title_fullStr Self‐compensation of DC–DC converters under peak current mode control
title_full_unstemmed Self‐compensation of DC–DC converters under peak current mode control
title_short Self‐compensation of DC–DC converters under peak current mode control
title_sort self compensation of dc dc converters under peak current mode control
topic peak current mode control
self‐compensation technique
chaotic regimes
DC‐DC switching converters
control signal extraction
inductor current
url https://doi.org/10.1049/el.2016.4082
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AT dgiaouris selfcompensationofdcdcconvertersunderpeakcurrentmodecontrol
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