PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements

In agriculture, proximal in-field information is crucial for a precise management of crop growth. A low-cost, miniaturized and innovative device, named PARADe (PAR Acquisition Device), is designed for in-field photosynthetically active radiation (PAR) acquisition. It combines an affordable PAR line...

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Autores principales: Arnaud Coffin, Clément Bonnefoy-Claudet, Morgane Chassaigne, Arthur Jansen, Christelle Gée
Formato: article
Lenguaje:EN
Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/5a91afc25b464623805a70db35b2803d
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spelling oai:doaj.org-article:5a91afc25b464623805a70db35b2803d2021-11-22T04:33:34ZPARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements2772-375510.1016/j.atech.2021.100018https://doaj.org/article/5a91afc25b464623805a70db35b2803d2021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2772375521000186https://doaj.org/toc/2772-3755In agriculture, proximal in-field information is crucial for a precise management of crop growth. A low-cost, miniaturized and innovative device, named PARADe (PAR Acquisition Device), is designed for in-field photosynthetically active radiation (PAR) acquisition. It combines an affordable PAR line quantum sensor (PAR/LE, SOLEMS) and an open source development platform (microcontroller) based on Arduino Integrated Development Environment. The quality of the measurement of the PARADe acquisition chain has been validated. The calibration is done by comparison (R2=0.99) with a robust acquisition chain composed of a certified PAR sensor (PQS1, Kipp and Zonen) and a data-logger (CR1000 Campbell Scientific). The accuracy of PARADe measurements is evaluated through three indicators, relative error, RMSE and normalized RMSE. They demonstrate that the PARADe system has certain operating limitations especially for low solar angles (sunset and sunrise) due to the choice of a line quantum sensor. This does not affect the accuracy and reliability of the results, but indicates that the PARADe device is specifically adapted to collect daily cumulative PAR values.Arnaud CoffinClément Bonnefoy-ClaudetMorgane ChassaigneArthur JansenChristelle GéeElsevierarticlePAR sensorCalibrationOpen sourceESP32 cardData loggingWi-FiAgriculture (General)S1-972Agricultural industriesHD9000-9495ENSmart Agricultural Technology, Vol 1, Iss , Pp 100018- (2021)
institution DOAJ
collection DOAJ
language EN
topic PAR sensor
Calibration
Open source
ESP32 card
Data logging
Wi-Fi
Agriculture (General)
S1-972
Agricultural industries
HD9000-9495
spellingShingle PAR sensor
Calibration
Open source
ESP32 card
Data logging
Wi-Fi
Agriculture (General)
S1-972
Agricultural industries
HD9000-9495
Arnaud Coffin
Clément Bonnefoy-Claudet
Morgane Chassaigne
Arthur Jansen
Christelle Gée
PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements
description In agriculture, proximal in-field information is crucial for a precise management of crop growth. A low-cost, miniaturized and innovative device, named PARADe (PAR Acquisition Device), is designed for in-field photosynthetically active radiation (PAR) acquisition. It combines an affordable PAR line quantum sensor (PAR/LE, SOLEMS) and an open source development platform (microcontroller) based on Arduino Integrated Development Environment. The quality of the measurement of the PARADe acquisition chain has been validated. The calibration is done by comparison (R2=0.99) with a robust acquisition chain composed of a certified PAR sensor (PQS1, Kipp and Zonen) and a data-logger (CR1000 Campbell Scientific). The accuracy of PARADe measurements is evaluated through three indicators, relative error, RMSE and normalized RMSE. They demonstrate that the PARADe system has certain operating limitations especially for low solar angles (sunset and sunrise) due to the choice of a line quantum sensor. This does not affect the accuracy and reliability of the results, but indicates that the PARADe device is specifically adapted to collect daily cumulative PAR values.
format article
author Arnaud Coffin
Clément Bonnefoy-Claudet
Morgane Chassaigne
Arthur Jansen
Christelle Gée
author_facet Arnaud Coffin
Clément Bonnefoy-Claudet
Morgane Chassaigne
Arthur Jansen
Christelle Gée
author_sort Arnaud Coffin
title PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements
title_short PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements
title_full PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements
title_fullStr PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements
title_full_unstemmed PARADe: A low-cost open-source device for photosynthetically active radiation (PAR) measurements
title_sort parade: a low-cost open-source device for photosynthetically active radiation (par) measurements
publisher Elsevier
publishDate 2021
url https://doaj.org/article/5a91afc25b464623805a70db35b2803d
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AT clementbonnefoyclaudet paradealowcostopensourcedeviceforphotosyntheticallyactiveradiationparmeasurements
AT morganechassaigne paradealowcostopensourcedeviceforphotosyntheticallyactiveradiationparmeasurements
AT arthurjansen paradealowcostopensourcedeviceforphotosyntheticallyactiveradiationparmeasurements
AT christellegee paradealowcostopensourcedeviceforphotosyntheticallyactiveradiationparmeasurements
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