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Impact of Tree-Oriented Growth Order in Marker-Controlled Region Growing for Individual Tree Crown Delineation Using Airborne Laser Scanner (ALS) Data

机译:树木生长顺序对机载激光扫描仪(ALS)数据描绘单个树冠的标记控制区域的影响

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Region growing is frequently applied in automated individual tree crown delineation (ITCD) studies. Researchers have developed various rules for initial seed selection and stop criteria when applying the algorithm. However, research has rarely focused on the impact of tree-oriented growth order. This study implemented a marker-controlled region growing (MCRG) algorithm that considers homogeneity, crown size, and shape using airborne laser scanning (ALS) data, and investigated the impact of three growth orders (i.e., sequential, independent, and simultaneous) on tree crown delineation. The study also investigated the benefit of combining ALS data and orthoimagery in treetop detection at both plot and individual tree levels. The results showed that complementary data from the orthoimagery reduced omission error associated with small trees in the treetop detection procedure and improved treetop detection percentage on a plot level by 2%–5% compared to ALS alone. For tree crown delineation, the growth order applied in the MCRG algorithm influenced accuracy. Simultaneous growth yielded slightly higher accuracy (about 2% improvement for producer’s and user’s accuracy) than sequential growth. Independent growth provided comparable accuracy to simultaneous growth in this study by dealing with overlapping pixels among trees according to crown shape. This study provides several recommendations for applying region growing in future ITCD research.
机译:区域生长通常用于自动树冠轮廓描绘(ITCD)研究中。研究人员为应用该算法制定了各种规则,以进行初始种子选择和终止标准。但是,研究很少集中在面向树的生长顺序的影响上。这项研究实施了一种标记控制区域生长(MCRG)算法,该算法使用机载激光扫描(ALS)数据考虑了同质性,冠的大小和形状,并研究了三个生长顺序(即连续,独立和同时)对树冠的轮廓。这项研究还调查了在地块和单个树木级别上将ALS数据和正射影像相结合在树顶检测中的好处。结果表明,与单独的ALS相比,来自正射影像的补充数据减少了在树梢检测过程中与小树相关的遗漏误差,并且在地块级别上将树梢检测百分比提高了2%–5%。对于树冠的描绘,MCRG算法中应用的生长顺序会影响准确性。同时增长的准确性要比连续增长的略高(对于生产者和用户的准确性提高约2%)。通过根据树冠形状处理树木之间的重叠像素,独立生长提供了与同期生长相当的准确性。这项研究为在将来的ITCD研究中应用区域增长提供了一些建议。

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