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Airborne videography to identify spatial plant growth variability for grain sorghum

机译:航空摄影以确定谷物高粱的空间植物生长变异性

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Much research has focused on the use of intensive grid soil sampling and yield monitors to identify within-field spatial variability in precision farming. This paper reports on the use of airborne videography to identify spatial plant growth patterns for grain sorghum. Color-infrared (CIR) digital video images were acquired from two grain sorghum fields in south Texas several times during the 1995 and 1996 growing seasons. The video images were registered, and classified into several zones of homogeneous spectral response using an unsupervised classification procedure. Ground truthing was performed upon a limited number of sties within each zone to determine plant density, plant height, leaf area index, biomass, and grain yield. Results from both years showed that the digital video imagery identified within-field plant growth variability and that classification maps effectively differentiated grain production levels and growth conditions within the two fields. A temporal comparison of the images and classification maps indicated that plant growth patterns differed somewhat between the two successive growing seasons, though areas exhibiting consistently high or low yield were identified within each field.
机译:许多研究都集中在使用密集的网格土壤采样和产量监测器来识别精准农业中的田间空间变异性上。本文报道了使用航空摄影技术确定谷物高粱的空间植物生长方式的情况。在1995年和1996年的生长季节中,几次从得克萨斯州南部的两个谷物高粱田采集了彩色红外(CIR)数字视频图像。记录视频图像,并使用无监督分类程序将其分类为几个均匀光谱响应的区域。在每个区域内的有限数量的小腿上进行地面实地调查,以确定植物密度,植物高度,叶面积指数,生物量和谷物产量。两年的结果表明,数字视频图像可以识别田间植物的生长变异性,并且分类图有效地区分了两个田地中的谷物生产水平和生长条件。图像和分类图的时间比较表明,尽管在每个田地中都发现了表现出持续高产或低产的区域,但两个连续生长季节之间的植物生长模式有所不同。

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