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Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation

Yield estimation is an essential preharvest practice among most large-scale farming companies, since it enables the predetermination of essential logistics to be allocated (i.e., transportation means, supplies, labor force, among others). An overestimation may thus incur further costs, whereas an un...

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Autores principales: Mekhalfi, Mohamed Lamine, Nicolò, Carlo, Ianniello, Ivan, Calamita, Federico, Goller, Rino, Barazzuol, Maurizio, Melgani, Farid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7435641/
https://www.ncbi.nlm.nih.gov/pubmed/32751295
http://dx.doi.org/10.3390/s20154214
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author Mekhalfi, Mohamed Lamine
Nicolò, Carlo
Ianniello, Ivan
Calamita, Federico
Goller, Rino
Barazzuol, Maurizio
Melgani, Farid
author_facet Mekhalfi, Mohamed Lamine
Nicolò, Carlo
Ianniello, Ivan
Calamita, Federico
Goller, Rino
Barazzuol, Maurizio
Melgani, Farid
author_sort Mekhalfi, Mohamed Lamine
collection PubMed
description Yield estimation is an essential preharvest practice among most large-scale farming companies, since it enables the predetermination of essential logistics to be allocated (i.e., transportation means, supplies, labor force, among others). An overestimation may thus incur further costs, whereas an underestimation entails potential crop waste. More interestingly, an accurate yield estimation enables stakeholders to better place themselves in the market. Yet, computer-aided precision farming is set to play a pivotal role in this respect. Kiwifruit represents a major produce in several countries (e.g., Italy, China, New and Zealand). However, up to date, the relevant literature remains short of a complete as well as automatic system for kiwifruit yield estimation. In this paper, we present a fully automatic and noninvasive computer vision system for kiwifruit yield estimation across a given orchard. It consists mainly of an optical sensor mounted on a minitractor that surveys the orchard of interest at a low pace. Afterwards, the acquired images are fed to a pipeline that incorporates image preprocessing, stitching, and fruit counting stages and outputs an estimated fruit count and yield estimation. Experimental results conducted on two large kiwifruit orchards confirm a high plausibility (i.e., errors of 6% and 15%) of the proposed system. The proposed yield estimation solution has been in commercial use for about 2 years. With respect to the traditional manual yield estimation carried out by kiwifruit companies, it was demonstrated to save a significant amount of time and cut down on estimation errors, especially when speaking of large-scale farming.
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spelling pubmed-74356412020-08-28 Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation Mekhalfi, Mohamed Lamine Nicolò, Carlo Ianniello, Ivan Calamita, Federico Goller, Rino Barazzuol, Maurizio Melgani, Farid Sensors (Basel) Article Yield estimation is an essential preharvest practice among most large-scale farming companies, since it enables the predetermination of essential logistics to be allocated (i.e., transportation means, supplies, labor force, among others). An overestimation may thus incur further costs, whereas an underestimation entails potential crop waste. More interestingly, an accurate yield estimation enables stakeholders to better place themselves in the market. Yet, computer-aided precision farming is set to play a pivotal role in this respect. Kiwifruit represents a major produce in several countries (e.g., Italy, China, New and Zealand). However, up to date, the relevant literature remains short of a complete as well as automatic system for kiwifruit yield estimation. In this paper, we present a fully automatic and noninvasive computer vision system for kiwifruit yield estimation across a given orchard. It consists mainly of an optical sensor mounted on a minitractor that surveys the orchard of interest at a low pace. Afterwards, the acquired images are fed to a pipeline that incorporates image preprocessing, stitching, and fruit counting stages and outputs an estimated fruit count and yield estimation. Experimental results conducted on two large kiwifruit orchards confirm a high plausibility (i.e., errors of 6% and 15%) of the proposed system. The proposed yield estimation solution has been in commercial use for about 2 years. With respect to the traditional manual yield estimation carried out by kiwifruit companies, it was demonstrated to save a significant amount of time and cut down on estimation errors, especially when speaking of large-scale farming. MDPI 2020-07-29 /pmc/articles/PMC7435641/ /pubmed/32751295 http://dx.doi.org/10.3390/s20154214 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mekhalfi, Mohamed Lamine
Nicolò, Carlo
Ianniello, Ivan
Calamita, Federico
Goller, Rino
Barazzuol, Maurizio
Melgani, Farid
Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation
title Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation
title_full Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation
title_fullStr Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation
title_full_unstemmed Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation
title_short Vision System for Automatic On-Tree Kiwifruit Counting and Yield Estimation
title_sort vision system for automatic on-tree kiwifruit counting and yield estimation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7435641/
https://www.ncbi.nlm.nih.gov/pubmed/32751295
http://dx.doi.org/10.3390/s20154214
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