Testing the suitability of a terrestrial 2D LiDAR scanner for canopy characterization of greenhouse tomato crops

Author

Llop, Jordi

Gil Moya, Emilio

Llorens Calveras, Jordi

Miranda-Fuentes, Antonio

Gallart, Montserrat

Publication date

2017-04-27T09:50:45Z

2017-04-27T09:50:45Z

2016

2017-04-27T09:50:46Z



Abstract

Canopy characterization is essential for pesticide dosage adjustment according to vegetation volume and density. It is especially important for fresh exportable vegetables like greenhouse tomatoes. These plants are thin and tall and are planted in pairs, which makes their characterization with electronic methods difficult. Therefore, the accuracy of the terrestrial 2D LiDAR sensor is evaluated for determining canopy parameters related to volume and density and established useful correlations between manual and electronic parameters for leaf area estimation. Experiments were performed in three commercial tomato greenhouses with a paired plantation system. In the electronic characterization, a LiDAR sensor scanned the plant pairs from both sides. The canopy height, canopy width, canopy volume, and leaf area were obtained. From these, other important parameters were calculated, like the tree row volume, leaf wall area, leaf area index, and leaf area density. Manual measurements were found to overestimate the parameters compared with the LiDAR sensor. The canopy volume estimated with the scanner was found to be reliable for estimating the canopy height, volume, and density. Moreover, the LiDAR scanner could assess the high variability in canopy density along rows and hence is an important tool for generating canopy maps.


This work was funded by the Spanish Ministry of Economy and Competitiveness AgVANCE project AGL2013-48297-C2-1-R) and the European Regional Development Fund (ERDF), and Cátedra Syngenta—UPC agreement for support training and research activities.

Document Type

Article
Published version

Language

English

Subjects and keywords

Greenhouse; Tomato crop; lidar; canopy characterization; LAI

Publisher

MDPI

Related items

info:eu-repo/grantAgreement/MINECO//AGL2013-48297-C2-1-R/ES/HERRAMIENTAS DE BASE FOTONICA PARA LA GESTION AGRONOMICA Y EL USO DE PRODUCTOS FITOSANITARIOS SOSTENIBLE EN CULTIVOS ARBOREOS EN EL MARCO DE LA AGRICULTURA DE PRECISION/

Reproducció del document publicat a: https://doi.org/10.3390/s16091435

Sensors, 2016, vol. 16, num. 9, p. 1435-1449

Rights

cc-by (c) Jordi Llop et al., 2016

http://creativecommons.org/licenses/by/4.0/

This item appears in the following Collection(s)