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      Geometrical optimization for a photovoltaic installation equipped with flat reflectors based on plane of array estimations

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          Abstract

          In order to design, manage and optimize the performance of a photovoltaic (PV) installation and establish a precise power production estimation, irradiance on the plane of array (POA) in relation with the geometrical characteristics of the PV modules installation occupies a high importance. This study focuses on the development of an estimation model of the POA irradiance for a photovoltaic installation equipped with flat reflectors. The model includes solar irradiance components (global, direct and diffuse), geometrical parameters and geographical characteristics of the PV installation. Experimental validations have been performed with measurements taken at the SIRTA Observatory (48.7°N, 2.2°E) in Palaiseau, France, for the period starting from June 2017 to June 2018. Results show mean absolute errors (relative to the mean) of 6% and 7% for an installation without and with planar reflector. Finally, we present several geometrical optimization strategies of the PV-reflector installation relying on two major variables: the reflector's length ( LR) compared to the length of the PV module ( L PV) and the tilt angle adjustment frequency (monthly, seasonally, fixed) of the system (for both PV and the reflectors). The objective of such optimization is to discuss about a reasonable configuration to achieve a maximum POA irradiance. Results show that the length of the mirrors highly affects the efficiency and performances of the PV-Reflector system and the annual gain increased from 8.5% to 28.7% when going from L R  =  L PV /2 to L R  = 2 ×  L PV compared to a monthly-optimized installation without mirrors. As for the adjustment frequency, we show that a monthly-varied architecture is the most advantageous option with a 28.2 and 31.6% increasing in annual gain compared to a seasonal varied or fixed ones, respectively.

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          Solar Engineering of Thermal Processes

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            SIRTA, a ground-based atmospheric observatory for cloud and aerosol research

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              Photovoltaic system performance enhancement with non-tracking planar concentrators: Experimental results and BDRF based modelling

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                Author and article information

                Journal
                epjpv
                https://www.epj-pv.org
                EPJ Photovoltaics
                EPJ Photovolt.
                EDP Sciences
                2105-0716
                31 January 2020
                31 January 2020
                2020
                : 11
                : ( publisher-idID: epjpv/2020/02 )
                : 1
                Affiliations
                [1 ] GeePs, CNRS UMR 8507, CentraleSupélec, Univ Paris-Sud, Sorbonne Université, 11 rue Joliot-Curie, Plateau de Moulon, , 91192 Gif-sur-Yvette Cedex, France,
                [2 ] LMD, Institut Pierre-Simon Laplace, CNRS, École Polytechnique, , 91128 Palaiseau Cedex, France,
                [3 ] LIMSI, UPR 3251 CNRS, Bâtiment 508, Rue John von Neumann, , 91405 Orsay Cedex, France,
                [4 ] Université Saint Esprit de Kaslik, USEK, Département de génie électrique et électronique, , BP446 Jounieh, Lebanon,
                Author notes
                Article
                pv190011
                10.1051/epjpv/2019010
                d06d6f69-9416-4c15-a6a3-657dbf35769b
                © C. Abdel Nour et al., published by EDP Sciences, 2020

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 20 April 2019
                : 19 November 2019
                : 10 December 2019
                Page count
                Figures: 17, Tables: 5, Equations: 14, References: 12, Pages: 14
                Categories
                Modules and Systems
                Regular Article
                Custom metadata
                national-agreement-fr_2019
                yes
                EPJ Photovoltaics 11, 1 (2020)
                2020
                2020
                2020

                Sustainable & Green chemistry,Materials technology,Semiconductors,Materials for energy,Technical & Applied physics,Renewable energy
                geometrical optimization,PV-reflector system,plane of array irradiance,flat reflectors,irradiance estimation

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