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Relationship Between Vegetation Indices and SPAD Values of Waxy Corn Using an Unmanned Aerial Vehicle

机译:使用无人驾驶飞行器的植被指数与蜡质玉米的划分和蜡

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The amount of chlorophyll in a plant can indicate leaf N concentration, as chlorophyll is a major component of nitrogen. Identifying chlorophyll levels in plants, therefore, leads to appropriate nitrogen fertilizer recommendations for the plants and to their fertilization at the proper time, optimizing efficiency of agricultural production and helping to preserve the environment by reducing excess use of nitrogen fertilizer. Measuring leaf N concentration in a high accuracy laboratory is expensive and time consuming, whereas a SPAD chlorophyll handheld meter can be carried conveniently in the field and can assess rapidly. However, the handheld meter's capacity is limited, especially in large areas, where samples must be taken to represent an area. The use of vegetation indices calculated from UAV imagery and correlated with SPAD values enables better estimations of N leaf concentrations over large areas. The result showed that relationship between NDVI and SPAD value (chlorophyll contents) of waxy corn (Zea mays L. var. ceratina) at V6 and R1 stage in R~2 were 0.594 and 0.632, respectively. The results of this study are beneficial for knowing the amount of chlorophyll in plants, which can result in accurate nitrogen fertilizer requirements and better administration of management zones in precision agriculture.
机译:叶绿素的植物中的量可以指示叶片氮浓度,如叶绿素是氮的主要组成部分。识别植物叶绿素水平,因此,导致相应的氮肥建议的植物,并在适当的时候他们施肥,优化农业生产的效率,并有助于通过减少过度使用氮肥的保护环境。在高精度测量实验室叶N浓度是昂贵和费时的,而SPAD叶绿素手持计可以方便在现场进行,并且可以快速评估。然而,手持式仪表的能力是有限的,尤其是在大的地区,那里的样品必须被用来代表一个区域。使用从UAV图像计算,并与相关值SPAD植被指数使Ñ叶浓度在大面积上的更好的估计。结果表明在V6和R1阶段NDVI和糯玉米的SPAD值(叶绿素含量)(玉蜀黍属变种ceratina)之间的关系中的R〜2分别为0.594和0.632。这项研究的结果对于了解叶绿素的植物量,这可能会导致精确的氮肥需求和精准农业管理分区的更好的管理是有益的。

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