Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization

Design of power systems needs prototype-less approaches. In particular, accurate simulations of a magnetic device are required during analysis of a given integrated power system. The planar and magnetic inductor is not available in device simulators and remains a difficult device to model particular...

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Main Authors: Aymen Ammouri, Tarek Ben Salah, Férid Kourda
Format: Article
Language:English
Published: ESRGroups 2018-03-01
Series:Journal of Electrical Systems
Subjects:
Online Access:https://journal.esrgroups.org/jes/papers/14_1_3.pdf
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spelling doaj-aa226d34ffd942d5934be3b9e8e1840c2020-11-25T03:03:39ZengESRGroupsJournal of Electrical Systems1112-52091112-52092018-03-011412944Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design OptimizationAymen AmmouriTarek Ben SalahFérid KourdaDesign of power systems needs prototype-less approaches. In particular, accurate simulations of a magnetic device are required during analysis of a given integrated power system. The planar and magnetic inductor is not available in device simulators and remains a difficult device to model particularly versus its air gap. This paper focuses on the modeling of magnetic planar inductors by calculating the air gap of the magnetic core. During the validation process, different types of magnetic core have been tested. The proposed planar inductor model is compared to the 3-D finite element method and has been confirmed with measured results of inductors having a large range of layout and process parameters. These inductors are also implemented in a DC-DC converter, validating high-efficiency integrated power system. https://journal.esrgroups.org/jes/papers/14_1_3.pdfmagnetic planar inductor modelair gapfinite element methods (fem)dc-dc power converter
collection DOAJ
language English
format Article
sources DOAJ
author Aymen Ammouri
Tarek Ben Salah
Férid Kourda
spellingShingle Aymen Ammouri
Tarek Ben Salah
Férid Kourda
Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization
Journal of Electrical Systems
magnetic planar inductor model
air gap
finite element methods (fem)
dc-dc power converter
author_facet Aymen Ammouri
Tarek Ben Salah
Férid Kourda
author_sort Aymen Ammouri
title Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization
title_short Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization
title_full Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization
title_fullStr Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization
title_full_unstemmed Physical Modeling of Spiral Inductors Vs Air Gap for DC-DC Power Converter Design Optimization
title_sort physical modeling of spiral inductors vs air gap for dc-dc power converter design optimization
publisher ESRGroups
series Journal of Electrical Systems
issn 1112-5209
1112-5209
publishDate 2018-03-01
description Design of power systems needs prototype-less approaches. In particular, accurate simulations of a magnetic device are required during analysis of a given integrated power system. The planar and magnetic inductor is not available in device simulators and remains a difficult device to model particularly versus its air gap. This paper focuses on the modeling of magnetic planar inductors by calculating the air gap of the magnetic core. During the validation process, different types of magnetic core have been tested. The proposed planar inductor model is compared to the 3-D finite element method and has been confirmed with measured results of inductors having a large range of layout and process parameters. These inductors are also implemented in a DC-DC converter, validating high-efficiency integrated power system.
topic magnetic planar inductor model
air gap
finite element methods (fem)
dc-dc power converter
url https://journal.esrgroups.org/jes/papers/14_1_3.pdf
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AT tarekbensalah physicalmodelingofspiralinductorsvsairgapfordcdcpowerconverterdesignoptimization
AT feridkourda physicalmodelingofspiralinductorsvsairgapfordcdcpowerconverterdesignoptimization
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