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Characterization of peach tree crown by using high-resolution images from an unmanned aerial vehicle

查看全文 作  者:Yue [1]Mu;Yuichiro [2]Fujii;Daisuke [3]Takata;Bangyou [4]Zheng;Koji [5,6]Noshita;Kiyoshi [7]Honda;Seishi [1]Ninomiya;Wei [1]Guo 高影响力作者 机构地区:[1]International Field Phenomics Research Laboratory,Institute for Sustainable Agro-ecosystem Services,The University of Tokyo,1-1-1 Midori-cho,Nishi-Tokyo,Tokyo,188-0002,Japan;[2]Research Institute for Agriculture,Okayama Prefectural Technology Center for Agriculture,Forestry and Fisheries,1174-1 Kodaoki,Akaiwa,Okayama,709-0801,Japan;[3]Fukushima University,1 Kanayagawa,Fukushima,Fukushima,960-1248,Japan;[4]CSIRO Agriculture and Food,Queensland Bioscience Precinct,306 Carmody Road,St.Lucia,QLD,4067,Australia;[5]JST PRESTO,Kawaguchi Center Building,4-1-8 Honcho,Kawaguchi,Saitama,332-0012,Japan;[6]Graduate School of Agricultural and Life Sciences,The University of Tokyo,1-1-1 Yayoi,Bunkyo,Tokyo,113-8657,Japan;[7]International Digital Earth Applied Science Research Center,Chubu University,1200 Matsumotocho,Kasugai,Aichi-ken,487-8501,Japan高影响力机构 出  处:《Horticulture Research》索引2018年第5卷第1期,共10页高影响力期刊 基  金:This study was partially funded by the“Collaboration Research Program of IDEAS”,Chubu University(IDEAS 201603 and IDEAS201702);the CREST Program“Knowledge Discovery by Constructing AgriBigData”(JPMJCR1512);the SICORP Program“Data Science-based Farming Support System for Sustainable Crop Production under Climatic Change”of the Japan Science and Technology Agency. 摘  要:In orchards, measuring crown characteristics is essential for monitoring the dynamics of tree growth and optimizing farm management. However, it lacks a rapid and reliable method of extracting the features of trees with an irregular crown shape such as trained peach trees. Here, we propose an efficient method of segmenting the individual trees and measuring the crown width and crown projection area (CPA) of peach trees with time-series information, based on gathered images. The images of peach trees were collected by unmanned aerial vehicles in an orchard in Okayama, Japan, and then the digital surface model was generated by using a Structure from Motion (SfM) and Multi-View Stereo (MVS) based software. After individual trees were identified through the use of an adaptive threshold and marker-controlled watershed segmentation in the digital surface model, the crown widths and CPA were calculated, and the accuracy was evaluated against manual delineation and field measurement, respectively. Taking manual delineation of 12 trees as reference, the root-mean-square errors of the proposed method were 0.08 m (R^(2) = 0.99) and 0.15 m (R^(2) = 0.93) for the two orthogonal crown widths, and 3.87 m2 for CPA (R^(2) = 0.89), while those taking field measurement of 44 trees as reference were 0.47 m (R^(2) = 0.91), 0.51 m (R^(2) = 0.74), and 4.96 m2 (R^(2) = 0.88). The change of growth rate of CPA showed that the peach trees grew faster from May to July than from July to September, with a wide variation in relative growth rates among trees. Not only can this method save labour by replacing field measurement, but also it can allow farmers to monitor the growth of orchard trees dynamically. 关 键 词:CROWN TREE WATERSHED
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