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Wheat ear temperature estimation using a thermal radiometriccamera

机译:小麦耳温估计使用热辐射素

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The temperature of the plant canopy is closely related with its transpirative status, and therefore, its stomatal conductance and cooling capacity. Ear and leaf temperature can provide useful information for monitoring crop water status, irrigation management and yield assessment. Previous studies have shown differences in temperature between ears and leaves, with higher ear temperatures than leaf temperatures observed. By employing a high resolution thermal radiometric camera for proximal imaging, temperature differences can be used for segmentation as well as for temperature estimation. This work uses thermal images taken from above the canopy at between 0.8 and lm distance. Measurements were acquired after solar noon. The field trials were carried out in three experimental sites and two crop seasons in Spain: Aranjuez (2016/2017), Sevilla (2015/2016) and Valladolid (2016/2017). A set of 24 varieties of durum wheat in two growing conditions, irrigated and rainfed, were used to build the thermal imagery database. The algorithm uses a pipeline system to filter the low temperatures and enhance the local contrast in order to segment the ear regions in each thermal image. Finally, using the full thermal radiometric information, the algorithms providethe temperature for each ear automatically detected. The results show high correlation values between the ear temperatures manually measured (using the thermal camera software) and the ear temperatures automatically measured using an automatic image processing pipeline.
机译:植物冠层的温度与其过散状态密切相关,因此是其气孔导电和冷却能力。耳朵和叶温可以提供监测作物水状态,灌溉管理和产量评估的有用信息。以前的研究表明耳朵和叶之间的温度差异,耳温比观察到的叶温度高。通过采用高分辨率的热辐射照相机进行近端成像,可以使用温度差异来进行分割以及温度估计。这项工作使用从顶篷上方的热图像在0.8和LM距离之间。在太阳中午之后获得了测量。现场试验是在三个实验部位和西班牙的两种作物季节进行:Aranjuez(2016/2017),塞维利亚(2015/2016)和Valladolid(2016/2017)。使用两种生长条件下的一组24种杜兰姆小麦,灌溉和雨水,用于构建热图像数据库。该算法使用管道系统过滤低温并增强局部对比度,以便在每个热图像中分段耳区域。最后,使用全热辐射信息,算法可自动检测的每个耳朵的温度。结果显示手动测量的耳温之间的高相关值(使用热摄像机软件),并且使用自动图像处理管道自动测量耳温。

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