SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells

The design and optimization of novel structures is an essential part of the next-generation solar cells development. Indeed, the technological steps involved in the development of high-performance solar cells involve a huge set of interdependent physical and geometrical parameters: layers thicknesse...

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Main Authors: Ould Saad Hamady Sidi, Fressengeas Nicolas
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:EPJ Photovoltaics
Subjects:
Online Access:https://www.epj-pv.org/articles/epjpv/full_html/2018/01/pv180009/pv180009.html
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spelling doaj-1b9848de3c71475f9a2ffef87992a2582021-04-02T09:18:12ZengEDP SciencesEPJ Photovoltaics2105-07162018-01-0191310.1051/epjpv/2018011pv180009SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cellsOuld Saad Hamady Sidi0https://orcid.org/0000-0002-0480-6381Fressengeas Nicolas1https://orcid.org/0000-0002-5534-712XUniversité de Lorraine, CentraleSupélec, LMOPSUniversité de Lorraine, CentraleSupélec, LMOPSThe design and optimization of novel structures is an essential part of the next-generation solar cells development. Indeed, the technological steps involved in the development of high-performance solar cells involve a huge set of interdependent physical and geometrical parameters: layers thicknesses, dopings, compositions, and defect characteristics. In this work, we propose a new open-source and free solar cell optimizer: SLALOM − for SoLAr ceLl multivariate OptiMizer − that implements a rigorous multivariate approach, which improves from the one-parameter-at-a-time procedure that is traditionally used in the field to a state-of-the-art multivariate approach. Applied to indium gallium nitride (InGaN) solar cells, it shows its potential to become a useful tool for the development of novel solar cells. SLALOM is implemented to be extended to any semiconductor simulation engine. Several models for solar cells have been implemented in SLALOM, including, for instance, InGaN. One can adapt these models to any solar cell technology by changing the parameter set, the here proposed generic code structure remaining unchanged.https://www.epj-pv.org/articles/epjpv/full_html/2018/01/pv180009/pv180009.htmlslalomsolar celloptimizationsimulationdesigningan
collection DOAJ
language English
format Article
sources DOAJ
author Ould Saad Hamady Sidi
Fressengeas Nicolas
spellingShingle Ould Saad Hamady Sidi
Fressengeas Nicolas
SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells
EPJ Photovoltaics
slalom
solar cell
optimization
simulation
design
ingan
author_facet Ould Saad Hamady Sidi
Fressengeas Nicolas
author_sort Ould Saad Hamady Sidi
title SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells
title_short SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells
title_full SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells
title_fullStr SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells
title_full_unstemmed SLALOM: Open-source, portable, and easy-to-use solar cell optimizer. Application to the design of InGaN solar cells
title_sort slalom: open-source, portable, and easy-to-use solar cell optimizer. application to the design of ingan solar cells
publisher EDP Sciences
series EPJ Photovoltaics
issn 2105-0716
publishDate 2018-01-01
description The design and optimization of novel structures is an essential part of the next-generation solar cells development. Indeed, the technological steps involved in the development of high-performance solar cells involve a huge set of interdependent physical and geometrical parameters: layers thicknesses, dopings, compositions, and defect characteristics. In this work, we propose a new open-source and free solar cell optimizer: SLALOM − for SoLAr ceLl multivariate OptiMizer − that implements a rigorous multivariate approach, which improves from the one-parameter-at-a-time procedure that is traditionally used in the field to a state-of-the-art multivariate approach. Applied to indium gallium nitride (InGaN) solar cells, it shows its potential to become a useful tool for the development of novel solar cells. SLALOM is implemented to be extended to any semiconductor simulation engine. Several models for solar cells have been implemented in SLALOM, including, for instance, InGaN. One can adapt these models to any solar cell technology by changing the parameter set, the here proposed generic code structure remaining unchanged.
topic slalom
solar cell
optimization
simulation
design
ingan
url https://www.epj-pv.org/articles/epjpv/full_html/2018/01/pv180009/pv180009.html
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AT fressengeasnicolas slalomopensourceportableandeasytousesolarcelloptimizerapplicationtothedesignofingansolarcells
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