Almond cultivar identification using machine learning classifiers applied to UAV-based multispectral data

被引:6
|
作者
Guimaraes, Nathalie [1 ,2 ]
Padua, Luis [1 ,2 ]
Sousa, Joaquim J. [1 ,3 ]
Bento, Albino [4 ]
Couto, Pedro [1 ,2 ]
机构
[1] Univ Tras os Montes & Alto Douro, Dept Engn, Vila Real, Portugal
[2] Ctr Res & Technol Agro Environm & Biol Sci CITAB, Vila Real, Portugal
[3] INESC TEC, Ctr Robot Ind & Intelligent Syst, Porto, Portugal
[4] Inst Politecn Braganca, Ctr Invest Montanha CIMO, Braganca, Portugal
关键词
unmanned aerial vehicles; precision agriculture; Prunus dulcis; tree cultivars classification; K-nearest neighbour; support vector machine; random forest; extreme gradient boosting; TREE SPECIES CLASSIFICATION; MEAN-SHIFT; VEGETATION; AGRICULTURE;
D O I
10.1080/01431161.2023.2185913
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
In Portugal, almonds are a very important crop, due to their nutritional properties. In the northeastern part of the country, the almond sector has endured over time, with strong cultural traditions and key economic significance. In these areas, several cultivars are used. In effect, the presence of various almond cultivars implies differentiated management in irrigation, disease control, pruning system, and harvest planning. Therefore, cultivar classification is essential over large agricultural areas. Over the last decades, remote-sensing data have led to important breakthroughs in the classification of different cultivars for several crops. Nonetheless, for almonds, studies are incipient. Thus, this study aims to fill this knowledge gap and explore the classification of almond cultivars in an almond orchard. High-resolution multispectral data were acquired by an unmanned aerial vehicle (UAV). Vegetation indices (VIs) and tree structural parameters were, subsequently, estimated. To obtain an accurate cultivar identification, four machine learning classifiers, such as K-nearest neighbour (kNN), support vector machine (SVM), random forest (RF), and extreme gradient boosting (XGBoost), were applied and optimized through the fine-tuning process. The accuracy of machine learning classifiers was analysed. SVM and RF performed best with OAs of 76% and 74% using VIs and spectral bands (GREEN, GRVI, GN, REN, ClRE). Adding the canopy height model (CHM) improved performance, with RF and XGBoost having OAs of 88% and 84%. kNN performed worst with an OA of 73% using only VIs and spectral bands, 80% with VIs, spectral bands and CHM, and 93% with VIs, CHM, and tree crown area (TCA). The best performance was achieved by RF and XGBoost with OAs of 99% using VIs, CHM, and TCA. These results demonstrate the importance of the feature selection process. Moreover, this study reveals the feasibility of remote-sensing data and machine learning classifiers in the classification of almond cultivars.
引用
收藏
页码:1533 / 1555
页数:23
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