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COMPARISON OF DISCRETE RETURN AND WAVEFORM TERRESTRIAL LASER SCANNING FOR DENSE VEGETATION FILTERING

机译:离散返回和波形陆地激光扫描对密集植被滤波的比较

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In this paper we present the results of the comparison between two terrestrial laser scanners (TLS), a discrete return system (Riegl LMS-Z620) and an echo-digitizing system (Riegl VZ-400), employed for the survey of a dense forested area, in the italian Alps. The site is actually undergoing a strong debate among the inhabitants and local government authorities about the exploitation of the area as a huge quarry to produce building material. The dispute originates from the uncertainty about the instability of the underlying mountain slope, which was interested in 1966 by a landslide. The whole area was surveyed with the two laser scanners on February 2011 during the vegetation dormant period. A slight different processing workflow was applied to the collected datasets: the VZ-400 scans were pre-filtered by exploiting the "calibrated relative reflectance" readings and the multi-target capability provided by this laser scanning system. Next, two different spatial filters were applied to both the resulting georeferenced 3D models, in order to eliminate as much vegetation as possible: iterative filter and a custom morphological filter, developed by the authors. Achieved results show that for both datasets, the iterative and the morphological filters perform quite well for eliminating the vegetation, though some manual editing is still required since vegetation does not feature a prevalent growing direction. Furthermore, the comparison between the number of points left in the final DTMs shows that the VZ-400 provided a one order of magnitude denser point cloud wrt. the LMS-Z620. This demonstrates that a TLS with multi-target capability can potentially provide a more detailed DTM even in presence of dense vegetation.
机译:在本文中,我们介绍了两个陆地激光扫描仪(TLS),离散返回系统(RIEGL LMS-Z620)和回声数字化系统(RIEGL VZ-400)之间的比较结果,用于调查茂密的森林的调查地区,在意大利阿尔卑斯山。该网站实际上经历了居民和地方政府当局的强烈辩论,关于该地区作为生产建筑材料的巨大采石场的利用。争端源于底层山坡不稳定的不确定性,这对1966年感兴趣的山体滑坡。 2011年2月在植被休眠期间与两次激光扫描仪调查了整个领域。将略微不同的处理工作流程应用于收集的数据集:通过利用该激光扫描系统提供的“校准的相对反射率”读数和多目标能力来预过滤VZ-400扫描。接下来,将两个不同的空间滤波器应用于所得到的地理参考的3D模型,以消除尽可能多的植被:迭代过滤器和由作者开发的定制形态过滤器。实现结果表明,对于两个数据集,迭代和形态过滤器对于消除植被来说,尽管仍然需要一些手动编辑,因为植被不具有普遍存在的生长方向。此外,在最终DTM中留在最终DTM中的点数之间的比较示出了VZ-400提供了一种幅度更大的升压点云WRT。 LMS-Z620。这证明了具有多目标能力的TL,即使存在密集的植被,也可以提供更详细的DTM。

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