首页> 外文会议>Optics for Natural Resoures, Agriculture, and Foods II; Proceedings of SPIE-The International Society for Optical Engineering; vol.6761 >Infrared thermoimage analysis as real time technique to evaluate infield pesticide spraying quality distribution
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Infrared thermoimage analysis as real time technique to evaluate infield pesticide spraying quality distribution

机译:红外热像分析作为实时技术评估田间农药喷洒质量分布

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Tests and calibration of sprayers have been considered a very important task for chemicals use reduction in agriculture and for improvement of plant phytosanitary protection. A reliable, affordable and easy-to-use method to observe the distribution in the field is required and the infrared thermoimage analysis can be considered as a potential method based on non-contact imaging technologies. The basic idea is that the application of colder water (10℃ less) than the leaves surface makes it possible to distinguish and measure the targeted areas by means of a infrared thermoimage analysis based on significant and time persistent thermal differences. Trials were carried out on a hedge of Prunus laurocerasus, 2.1 m height with an homogenous canopy. A trailed orchard sprayer was employed with different spraying configurations. A FLIR? (S40) thermocamera was used to acquire (@ 50 Hz) thermal videos, in a fixed position, at frame rate of 10 images/s, for nearly 3 min. Distribution quality was compared to the temperature differences obtained from the thermal images between pre-treatment and post-treatment (AT)., according two analysis: time-trend of AT average values for different hedge heights and imaging AT distribution and area coverage by segmentation in k means clustering after 30 s of spraying. The chosen spraying configuration presented a quite good distribution for the entire hedge height with the exclusion of the lower (0-1 m from the ground) and the upper part (>1.9 m). Through the image segmentation performed of AT image by k-means clustering, it was possible to have a more detailed and visual appreciation of the distribution quality among the entire hedge. The thermoimage analysis revealed interesting potentiality to evaluate quality distribution from orchards sprayers.
机译:喷雾器的测试和校准已被认为是减少农业中化学品使用量和改善植物植物检疫保护的一项非常重要的任务。需要一种可靠,负担得起且易于使用的方法来观察现场分布,并且红外热图像分析可以被认为是基于非接触式成像技术的一种潜在方法。其基本思想是,比叶片表面使用冷水(低10℃)可以通过基于显着和持续时间差异的红外热图像分析来区分和测量目标区域。试验在矮树李(Prunus laurocerasus)的树篱上进行,树篱高2.1 m,树冠均一。牵引式果园喷雾机采用不同的喷雾方式。 FLIR? (S40)热像仪用于在固定位置以10幅图像/秒的帧速率采集(@ 50 Hz)热视频近3分钟。根据两种分析将分布质量与从预处理和后处理(AT)之间的热图像获得的温度差进行比较:两种不同树篱高度的AT平均值的时间趋势,以及通过分段对AT分布和区域覆盖率进行成像k表示喷涂30 s后成簇。选择的喷涂配置在整个树篱高度上都表现出很好的分布,不包括下部(离地面0-1 m)和上部(> 1.9 m)。通过用k均值聚类对AT图像进行图像分割,可以对整个树篱中的分布质量有更详细和直观的了解。热图像分析显示了评估果园喷雾机质量分布的有趣潜力。

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