2D Modeling of Solar Cell Radial Junction: Study of Carriers Charge Density and Photocurrent Density in Static Mode under Monochromatic Illumination

Ouédraogo, Moussa and Sam, Raguilignaba and Diasso, Alain and Zouma, Bernard and Zougmoré, François (2020) 2D Modeling of Solar Cell Radial Junction: Study of Carriers Charge Density and Photocurrent Density in Static Mode under Monochromatic Illumination. Energy and Power Engineering, 12 (10). pp. 568-577. ISSN 1949-243X

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Abstract

A theoretical study of a polysilicon solar cell with a radial junction in static regime under monochromatic illumination is presented in this paper. The junction radial solar cell geometry is illustrated and described. The carriers’ diffusion equation is established and solved under quasi-neutral base assumption with boundaries conditions and Bessel equations. New analytical expressions of electrons and holes density and photocurrent are found. The wavelength and structural parameters (base radius, emitter thickness) influences on charge carriers density and photocurrent are shown and examined.

Item Type: Article
Subjects: OA Library Press > Engineering
Depositing User: Unnamed user with email support@oalibrarypress.com
Date Deposited: 12 May 2023 06:15
Last Modified: 13 Sep 2024 07:23
URI: http://archive.submissionwrite.com/id/eprint/917

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