用于地中海森林清查的基于无人机图像的陆地地形和航空摄影测量点云融合

IF 0.8 4区 工程技术 Q3 ENGINEERING, MULTIDISCIPLINARY
Dyna Pub Date : 2019-03-01 DOI:10.6036/8892
F. A. Torres, Abderrahim Nemmaoui, M. Torres, Alberto Peñalver Romeo
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引用次数: 1

摘要

在这项工作中,通过融合遥控飞机系统数字航空摄影测量(RPAS-DAP)和地面激光扫描(TLS)的数据,检验了合并互补技术数据进行森林清查的便利性假设。工作区位于“Sierra Maria Los Velez”自然公园(西班牙阿尔梅里亚),由两个主要森林层组成的具有代表性的地中海森林组成:i)主要树木(重新造林的阿勒颇松(Pinus halepensis Mill.)),以及ii)林下森林(霍姆橡树(Quercus ilex L.)和不同的灌木物种)。将基于对象的图像分析(OBIA)流水线应用于相应的RPAS-DAP RGB正射图像和直接从基于图像的点云导出的高分辨率树冠高度模型(CHM)。这使得能够自动获得树木轮廓、物种分类和森林结构属性(树木高度、位置和投影树冠面积)。从CHM和绿叶指数得出的几何特征被用于提供一种量身定制的基于OBIA的方法。由TLS和RPAS-DAP点云组合而成的非常高分辨率的融合点云提供了基于树木的生物特征信息,如树木位置、乳高直径、树冠投影面积和树木高度,以通过与阿勒颇松相对应的异速测量方程来估计主要树木的森林地上干生物量(AGB)。总之,从本工作中提出的管道中获得的结果表明了基于RPAS图像的方法和TLS的互补性,可以及时有效地提供高附加值的产品,如森林AGB和地中海森林上的树种空间分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FUSIÓN DE NUBES DE PUNTOS DE ESCÁNER LÁSER TERRESTRE Y FOTOGRAMETRÍA AÉREA BASADA EN IMÁGENES DE DRONES PARA EL INVENTARIO DE BOSQUES MEDITERRÁNEOS
In this work, the hypothesis of the convenience of merging data of complementary techniques to carry out forest inventories is tested by fusing data from Remotely Piloted Aircraft System Digital Aerial Photogrammetry (RPAS-DAP) and Terrestrial Laser Scanning (TLS). The work area was in the Natural Park "Sierra Maria-Los Velez" (Almeria, Spain), constituted of a representative Mediterranean forest composed of two main forest layers: i) predominant trees (reforested Aleppo pine (Pinus halepensis Mill.)), and ii) understory forest (holm oak (Quercus ilex L.) and different shrubs species). An Object Based Image Analysis (OBIA) pipeline was applied over the corresponding RPAS-DAP RGB orthoimage and a high-resolution Canopy Height Model (CHM) directly derived from the image-based point cloud. This allowed the automatic obtaining of tree delineation, species classification and forest structural attributes (tree height, position and projected crown area). Geometric features derived from the CHM and Green Leaf Index were used to feed a tailored devised OBIA-based method. The very high-resolution fused point cloud, made up from combining TLS and RPAS-DAP point clouds, provided tree-based biometric information such as tree position, diameter at breast height, crown projected area and tree height to estimate forest Above-Ground dry Biomass (AGB) for predominant trees through the allometric equation corresponding to Aleppo pine. In conclusion, the results obtained from the pipeline proposed in this work have shown the complementarity of RPAS image-based methods and TLS to provide timely and efficiently high value-added products such as forest AGB and tree species spatial distribution over Mediterranean forest.
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来源期刊
Dyna
Dyna 工程技术-工程:综合
CiteScore
1.00
自引率
10.00%
发文量
131
审稿时长
6-12 weeks
期刊介绍: Founded in 1926, DYNA is one of the journal of general engineering most influential and prestigious in the world, as it recognizes Clarivate Analytics. Included in Science Citation Index Expanded, its impact factor is published every year in Journal Citations Reports (JCR). It is the Official Body for Science and Technology of the Spanish Federation of Regional Associations of Engineers (FAIIE). Scientific journal agreed with AEIM (Spanish Association of Mechanical Engineering) In character Scientific-technical, it is the most appropriate way for communication between Multidisciplinary Engineers and for expressing their ideas and experience. DYNA publishes 6 issues per year: January, March, May, July, September and November.
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