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Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case

Photosynthesis is a vital process for the planet. Its estimation involves the measurement of different variables and its processing through a mathematical model. This article presents a black-box mathematical model to estimate the net photosynthesis and its digital implementation. The model uses var...

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Autores principales: García-Rodríguez, Luz del Carmen, Prado-Olivarez, Juan, Guzmán-Cruz, Rosario, Heil, Martin, Guevara-González, Ramón Gerardo, Diaz-Carmona, Javier, López-Tapia, Héctor, Padierna-Arvizu, Diego de Jesús, Espinosa-Calderón, Alejandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323922/
https://www.ncbi.nlm.nih.gov/pubmed/35890954
http://dx.doi.org/10.3390/s22145275
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author García-Rodríguez, Luz del Carmen
Prado-Olivarez, Juan
Guzmán-Cruz, Rosario
Heil, Martin
Guevara-González, Ramón Gerardo
Diaz-Carmona, Javier
López-Tapia, Héctor
Padierna-Arvizu, Diego de Jesús
Espinosa-Calderón, Alejandro
author_facet García-Rodríguez, Luz del Carmen
Prado-Olivarez, Juan
Guzmán-Cruz, Rosario
Heil, Martin
Guevara-González, Ramón Gerardo
Diaz-Carmona, Javier
López-Tapia, Héctor
Padierna-Arvizu, Diego de Jesús
Espinosa-Calderón, Alejandro
author_sort García-Rodríguez, Luz del Carmen
collection PubMed
description Photosynthesis is a vital process for the planet. Its estimation involves the measurement of different variables and its processing through a mathematical model. This article presents a black-box mathematical model to estimate the net photosynthesis and its digital implementation. The model uses variables such as: leaf temperature, relative leaf humidity, and incident radiation. The model was elaborated with obtained data from Capsicum annuum L. plants and calibrated using genetic algorithms. The model was validated with Capsicum annuum L. and Capsicum chinense Jacq. plants, achieving average errors of 3% in Capsicum annuum L. and 18.4% in Capsicum chinense Jacq. The error in Capsicum chinense Jacq. was due to the different experimental conditions. According to evaluation, all correlation coefficients (Rho) are greater than 0.98, resulting from the comparison with the LI-COR Li-6800 equipment. The digital implementation consists of an FPGA for data acquisition and processing, as well as a Raspberry Pi for IoT and in situ interfaces; thus, generating a useful net photosynthesis device with non-invasive sensors. This proposal presents an innovative, portable, and low-scale way to estimate the photosynthetic process in vivo, in situ, and in vitro, using non-invasive techniques.
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spelling pubmed-93239222022-07-27 Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case García-Rodríguez, Luz del Carmen Prado-Olivarez, Juan Guzmán-Cruz, Rosario Heil, Martin Guevara-González, Ramón Gerardo Diaz-Carmona, Javier López-Tapia, Héctor Padierna-Arvizu, Diego de Jesús Espinosa-Calderón, Alejandro Sensors (Basel) Article Photosynthesis is a vital process for the planet. Its estimation involves the measurement of different variables and its processing through a mathematical model. This article presents a black-box mathematical model to estimate the net photosynthesis and its digital implementation. The model uses variables such as: leaf temperature, relative leaf humidity, and incident radiation. The model was elaborated with obtained data from Capsicum annuum L. plants and calibrated using genetic algorithms. The model was validated with Capsicum annuum L. and Capsicum chinense Jacq. plants, achieving average errors of 3% in Capsicum annuum L. and 18.4% in Capsicum chinense Jacq. The error in Capsicum chinense Jacq. was due to the different experimental conditions. According to evaluation, all correlation coefficients (Rho) are greater than 0.98, resulting from the comparison with the LI-COR Li-6800 equipment. The digital implementation consists of an FPGA for data acquisition and processing, as well as a Raspberry Pi for IoT and in situ interfaces; thus, generating a useful net photosynthesis device with non-invasive sensors. This proposal presents an innovative, portable, and low-scale way to estimate the photosynthetic process in vivo, in situ, and in vitro, using non-invasive techniques. MDPI 2022-07-14 /pmc/articles/PMC9323922/ /pubmed/35890954 http://dx.doi.org/10.3390/s22145275 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
García-Rodríguez, Luz del Carmen
Prado-Olivarez, Juan
Guzmán-Cruz, Rosario
Heil, Martin
Guevara-González, Ramón Gerardo
Diaz-Carmona, Javier
López-Tapia, Héctor
Padierna-Arvizu, Diego de Jesús
Espinosa-Calderón, Alejandro
Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case
title Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case
title_full Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case
title_fullStr Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case
title_full_unstemmed Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case
title_short Black-Box Mathematical Model for Net Photosynthesis Estimation and Its Digital IoT Implementation Based on Non-Invasive Techniques: Capsicum annuum L. Study Case
title_sort black-box mathematical model for net photosynthesis estimation and its digital iot implementation based on non-invasive techniques: capsicum annuum l. study case
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9323922/
https://www.ncbi.nlm.nih.gov/pubmed/35890954
http://dx.doi.org/10.3390/s22145275
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