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Evaluating the robustness of point clouds from small format aerial photography over a Pinus radiata plantation

机译:从鸬鹚种植园评估小幅型航拍点云的鲁棒性

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Extensive research and operational trials over the past 20years have led to the operational implementation of airborne laser scanning (ALS)-based forest inventory becoming increasingly common. More recently, digital aerial photography (AP), processed using Structure from Motion Multiview Stereopsis (SfM-MVS) photogrammetry, is emerging as an alternative to ALS. Aerial photography may provide some advantages compared with ALS, including lower deployment and data collection costs, easier access to a variety of platforms and sensors, and the opportunity for forest managers to capture and process the data in-house. This study presents an analysis of point-cloud data derived from airborne small format digital AP, and a comparison with ALS data for a Pinus radiata plantation located in north-east Tasmania. The AP was processed using commercially available photogrammetric software and three different processing strategies. The influence of processing strategy, terrain slope, canopy occlusion, canopy cover, photo-overlap and camera location are investigated in order to characterise the point clouds generated using these methods, and to assess the robustness of the photogrammetric solution to these variables. Our analysis provides strong evidence of the robustness of small format AP-based point clouds in this type of forest: characteristics of the dense point cloud are shown to be largely robust to different photogrammetric processing strategies. Observations regarding the influence of terrain slope, photo-overlap, canopy occlusions, canopy cover and camera location can be used to optimise flight planning and photo-acquisition.
机译:过去20年的广泛研究和运营试验导致了空中激光扫描(ALS)的运作实施,基于森林库存变得越来越普遍。最近,使用来自运动多视图立体(SFM-MVS)摄影测量的结构的数字空中摄影(AP)正在涌现为ALS的替代品。与ALS相比,航空摄影可能提供一些优点,包括降低部署和数据收集成本,更容易获得各种平台和传感器,以及森林经理捕获和处理内部数据的机会。该研究提出了源自空中小型数字AP的点云数据的分析,以及位于东北塔斯马尼亚州的碱辐射植物的ALS数据进行比较。 AP使用商业上可获得的摄影测量软件和三种不同的处理策略进行处理。研究了加工策略,地形斜坡,树冠闭塞,冠层覆盖,光重叠和摄像机位置的影响,以表征使用这些方法产生的点云,并评估光摄影液体对这些变量的鲁棒性。我们的分析提供了这种森林中基于小幅的基于AP的点云的强大证据:致密点云的特征在很大程度上是对不同摄影测量策略的强大。关于地形坡度,光叠层,冠层闭塞,冠层覆盖和相机位置的观察可用于优化飞行规划和光采集。

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