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利用与智能手机相连的热成像相机评估扁桃(Prunus dulcis Mill.)树的作物-水分状况。

Assessing the Crop-Water Status in Almond (Prunus dulcis Mill.) Trees via Thermal Imaging Camera Connected to Smartphone.

机构信息

Instituto Andaluz de Investigación y Formación Agraria y Pesquera (IFAPA), Centro "Las Torres-Tomejil", Ctra. Sevilla-Cazalla km. 12,2, 41.200 Alcalá del Río (Sevilla), Spain.

Universidade Estadual do Norte Fluminense Darcy Ribeiro (UENF), Av. Alberto Lamego, 2000 Campos dos Goytacazes, RJ, Brazil.

出版信息

Sensors (Basel). 2018 Mar 31;18(4):1050. doi: 10.3390/s18041050.

Abstract

Different tools are being implemented in order to improve the water management in agricultural irrigated areas of semiarid environments. Thermography has been progressively introduced as a promising technique for irrigation scheduling and the assessing of crop-water status, especially when deficit irrigation is being implemented. However, an important limitation is related to the cost of the actual cameras, this being a severe limitation to its practical usage by farmers and technicians. This work evaluates the potential and the robustness of a thermal imaging camera that is connected to smartphone (Flir One) recently developed by Flir Systems Inc. as a first step to assess the crop water status. The trial was developed in mature almond ( Mill.) trees that are subjected to different irrigation treatments. Thermal information obtained by the Flir One camera was deal with the thermal information obtained with a conventional Thermal Camera (Flir SC660) with a high resolution, and subsequently, confronted with other related plant physiological parameters (leaf water potential, Ψ, and stomatal conductance, g). Thermal imaging camera connected to smartphone provided useful information in estimating the crop-water status in almond trees, being a potential promising tool to accelerate the monitoring process and thereby enhance water-stress management of almond orchards.

摘要

为了改善半干旱环境中农业灌溉区的水资源管理,正在采用不同的工具。热成像技术已逐渐被引入作为一种有前途的灌溉计划和作物水分状况评估技术,特别是在实施亏缺灌溉时。然而,一个重要的限制因素与实际摄像机的成本有关,这是其在农民和技术人员实际使用中的一个严重限制。本工作评估了最近由 Flir Systems Inc. 开发的连接到智能手机的热成像相机(Flir One)的潜力和稳健性,作为评估作物水分状况的第一步。该试验是在成熟的杏仁(Mill.)树上进行的,这些树受到不同的灌溉处理。用 Flir One 相机获得的热信息与具有高分辨率的传统热相机(Flir SC660)获得的热信息进行了处理,随后与其他相关的植物生理参数(叶水势 Ψ和气孔导度 g)进行了对比。连接到智能手机的热成像相机为估计杏仁树的作物水分状况提供了有用的信息,是加速监测过程并从而增强杏仁果园水分胁迫管理的有潜力的有前途的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c32c/5948678/790eb782ce23/sensors-18-01050-g001.jpg

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