首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >COMPARING THE GENERATION OF DTM IN A FOREST ECOSYSTEM USING TLS, ALS AND UAV-DAP, AND DIFFERENT SOFTWARE TOOLS
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COMPARING THE GENERATION OF DTM IN A FOREST ECOSYSTEM USING TLS, ALS AND UAV-DAP, AND DIFFERENT SOFTWARE TOOLS

机译:使用TLS,ALS和UAV-DAP和不同的软件工具将DTM的生成与不同的软件工具进行比较

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Remote sensing and photogrammetry techniques have demonstrated to be an important tool for the characterization of forest ecosystems. Nonetheless, the use of these techniques requires an accurate digital terrain model (DTM) for the height normalization procedure, which is a key step prior to any further analyses. In this manuscript, we assess the extraction of the DTM for different techniques (airborne laser scanning: ALS, terrestrial laser scanning: TLS, and digital aerial photogrammetry in unmanned aerial vehicle: UAV-DAP), processing tools with different algorithms (FUSION/LDV© and LAStools©), algorithm parameters, and plot characteristics (canopy and shrub cover, and terrain slope). To do this, we compare the resulting DTMs with one used as reference and extracted from classic surveying measurements. Our results demonstrate, firstly, that ALS and reference DTMs are similar in the different scenarios, except for steep slopes. Secondly, TLS DTMs are slightly less accurate than those extracted for ALS, since items such as trunks and shrubs cause a great occlusion due to the proximity of the instrument, and some of the points filtered as ground correspond to these items as well, therefore a finer setting of algorithm parameters is required. Lastly, DTMs extracted for UAV-DAP in dense canopy scenarios have a low accuracy, however, accuracy may be enhanced by modifying the processing tool and algorithm parameters. An accurate DTM is essential for further forestry applications, therefore, to know how to take advantage of the available data to obtain the most accurate DTM is also fundamental.
机译:遥感和摄影测量技术已经证明是森林生态系统表征的重要工具。尽管如此,这些技术的使用需要准确的数字地形模型(DTM),用于高度归一化过程,这是进一步分析之前的关键步骤。在此稿件中,我们评估DTM的不同技术(空气传播激光扫描:ALS,陆地激光扫描:TLS和数字空中车辆中的数字空中摄影测量:UAV-DAP),用不同算法的处理工具(Fusion / LDV ©和lastools©),算法参数和绘图特性(遮篷和灌木覆盖和地形斜率)。为此,我们将产生的DTM与用作参考的一个用作参考并从经典测量测量中提取。首先,我们的结果表明,除了陡坡之外,ALS和参考DTM在不同的情况下类似。其次,TLS DTM略微不如为ALS提取的DTM略低于准确,因为诸如树干和灌木的物品由于仪器的附近而导致较大的遮挡,并且作为地面滤波的一些点也对应于这些物品,因此需要更精细的算法参数设置。最后,在密集的拱起场景中提取的DTM用于UAV-DAP具有低精度,但是通过修改处理工具和算法参数,可以提高精度。准确的DTM对于进一步的林业应用是必不可少的,因此,要知道如何利用可用数据,以获得最准确的DTM也是基础。

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