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Monitoring of crop biomass using true colour aerial photographs taken from a remote controlled hexacopter

机译:使用从遥控六轴飞行器拍摄的真实彩色航拍照片监测作物生物量

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The use of unmanned aerial vehicles has been recently increasing in precision agriculture as an alternative to very costly and not readily available satellites or airborne sensors. Vegetation indices based solely on visible reflectance, which can be derived from true colour images may be a simple and cheap alternative compared to near infrared indices. A remote-controlled hexacopter with an RGB digital camera was tested for evaluating crop biomass. The hexacopter was flown over a field in which peas and oats were grown as sole crops and intercrops, fertilised with horse manure and yard-waste compost (10 t C ha(-1)). The images were taken at flowering stage. Based on the aerial photographs, the Normalised Green-Red Difference Index (NGRDI) was calculated, and related to aboveground biomass and leaf area index (LAI). The mean of NGRDI values ranged from 0.09 to 0.13 without any effect of cropping system, while the fertiliser significantly affected the yield and the corresponding NGRDI values. NGRDI values were positively and significantly correlated with the aboveground biomass (r = 0.58-0.78). A high autocorrelation of NGRDI, and thus biomass, was found within the treatment plots and used for block kriging to show the spatial variability in the field. No relationship was found between NGRDI and LAI in peas (P = 0.68) or oats (P = 0.15). Nevertheless, true colour images from a hexacopter and the derived NGRDI values are a cost-effective tool for biomass estimation and the establishment of yield variation maps for site-specific agricultural decision making. (C) 2014 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:近来,在精密农业中,无人驾驶飞机的使用日益增加,以替代非常昂贵且不易获得的卫星或机载传感器。与近红外指数相比,仅基于可见反射率的植被指数可以是由真实彩色图像得出的,它可能是一种简单且便宜的选择。测试了带有RGB数码相机的遥控直升机,以评估农作物生物量。六旋翼飞机飞过一个田地,豌豆和燕麦作为唯一的农作物和间作作物种植,并以马粪和堆肥(10 t C ha(-1))施肥。图像是在开花期拍摄的。根据航拍照片,计算归一化绿红差指数(NGRDI),并与地上生物量和叶面积指数(LAI)相关。 NGRDI平均值在0.09到0.13之间,没有任何种植系统的影响,而肥料显着影响产量和相应的NGRDI值。 NGRDI值与地上生物量呈正相关(r = 0.58-0.78)。在处理区内发现了NGRDI的高度自相关,因此生物量也很高,可用于块克里金法以显示田间的空间变异性。在豌豆(P = 0.68)或燕麦(P = 0.15)中,NGRDI和LAI之间没有关系。然而,从直升机上获得的真实彩色图像和导出的NGRDI值是用于生物量估算和建立针对特定地点的农业决策的产量变化图的经济有效的工具。 (C)2014年。由Elsevier Ltd.出版。保留所有权利。

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