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Autori principali: Soref, Richard, De Leonardis, Francesco, Moutanabbir, Oussama, Daligou, Gerard
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2407.00049
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author Soref, Richard
De Leonardis, Francesco
Moutanabbir, Oussama
Daligou, Gerard
author_facet Soref, Richard
De Leonardis, Francesco
Moutanabbir, Oussama
Daligou, Gerard
contents The commercially available 4000-Watt continuous-wave Erbium-doped-fiber laser, emitting at the 1567-nanometer wavelength where the atmosphere has high transmission, provides an opportunity for harvesting electric power at remote off the grid locations using a multi-module photovoltaic receiver panel. This paper proposes a 32-element monocrystalline thick-layer Germanium photovoltaic panel for efficient harvesting of a collimated 1.13-meter-diameter beam.The 0.78-meter squared PV panel is constructed from commercial Ge wafers. For incident continuous-wave laser-beam power in the 4000 to 10000 Watt range, our thermal and electrical and infrared simulations predict 660 to 1510 Watts of electrical output at panel temperatures of 350 to 423 Kelvin.
format Preprint
id arxiv_https___arxiv_org_abs_2407_00049
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Remote Electric Powering by Germanium Photovoltaic Conversion of an Erbium-Fiber Laser Beam
Soref, Richard
De Leonardis, Francesco
Moutanabbir, Oussama
Daligou, Gerard
Applied Physics
Optics
The commercially available 4000-Watt continuous-wave Erbium-doped-fiber laser, emitting at the 1567-nanometer wavelength where the atmosphere has high transmission, provides an opportunity for harvesting electric power at remote off the grid locations using a multi-module photovoltaic receiver panel. This paper proposes a 32-element monocrystalline thick-layer Germanium photovoltaic panel for efficient harvesting of a collimated 1.13-meter-diameter beam.The 0.78-meter squared PV panel is constructed from commercial Ge wafers. For incident continuous-wave laser-beam power in the 4000 to 10000 Watt range, our thermal and electrical and infrared simulations predict 660 to 1510 Watts of electrical output at panel temperatures of 350 to 423 Kelvin.
title Remote Electric Powering by Germanium Photovoltaic Conversion of an Erbium-Fiber Laser Beam
topic Applied Physics
Optics
url https://arxiv.org/abs/2407.00049