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3D surface reconstruction of Terrestrial Laser Scanner data for forestry

机译:林业用地面激光扫描仪数据的3D表面重建

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Recently, Terrestrial Laser Scanners (TLS) have received considerable attention for their potential applications in forest management, archaeology, ecology as well as remote sensing and urban planning applications. Although TLS is limited in its use in small areas, it is feasible to be applied to forest inventory and deliver better sampling accuracy, objectivity, and can enhance or replace field surveys in forestry. This paper presents a framework for using TLS measurements taken by Leica HDS6000 TLS produce 3D point cloud data and to model individual trees. In particular, the quantitative and qualitative analysis of the 3D point cloud data for four different types of trees derived by TLS is discussed and the processing steps are presented. The Crust algorithm is used for the reconstruction of surfaces of arbitrary topology from the 3D point cloud data. The four individual tree models derived from the TLS system and their 3D surface reconstruction by the field survey of individual tree surfaces are possible with this technology.
机译:最近,陆地激光扫描仪(TLS)对森林管理,考古学,生态以及遥感和城市规划应用中的潜在应用得到了相当大的关注。虽然TLS在其在小区的使用中受到限制,但可行适用于森林库存并提供更好的采样精度,客观性,并可以增强或更换林业的现场调查。本文介绍了使用Leica HDS6000 TLS产生的TLS测量的框架,从而产生3D点云数据并为单独的树木塑造。特别地,讨论了由TLS导出的四种不同类型的树的3D点云数据的定量和定性分析,并呈现处理步骤。 CRUST算法用于从3D点云数据重建任意拓扑的表面。通过该技术可以实现从TLS系统的四个单独的树模型及其由各个树表面的现场调查进行的3D表面重建。

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