首页> 外文会议>Imaging a Sustainable Future >RECORDING APPROACH OF HERITAGE SITES BASED ON MERGING POINT CLOUDS FROM HIGH RESOLUTION PHOTOGRAMMETRY AND TERRESTRIAL LASER SCANNING
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RECORDING APPROACH OF HERITAGE SITES BASED ON MERGING POINT CLOUDS FROM HIGH RESOLUTION PHOTOGRAMMETRY AND TERRESTRIAL LASER SCANNING

机译:基于高分辨率摄影测量和陆地激光扫描的合并点云的遗产网站录制方法

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Different approaches and tools are required in Cultural Heritage Documentation to deal with the complexity of monuments and sites. The documentation process has strongly changed in the last few years, always driven by technology. Accurate documentation is closely relied to advances of technology (imaging sensors, high speed scanning, automation in recording and processing data) for the purposes of conservation works, management, appraisal, assessment of the structural condition, archiving, publication and research (Patias et al., 2008). We want to focus in this paper on the recording aspects of cultural heritage documentation, especially the generation of geometric and photorealistic 3D models for accurate reconstruction and visualization purposes. The selected approaches are based on the combination of photogrammetric dense matching and Terrestrial Laser Scanning (TLS) techniques. Both techniques have pros and cons and recent advances have changed the way of the recording approach. The choice of the best workflow relies on the site configuration, the performances of the sensors, and criteria as geometry, accuracy, resolution, georeferencing, texture, and of course processing time. TLS techniques (time of flight or phase shift systems) are widely used for recording large and complex objects and sites. Point cloud generation from images by dense stereo or multi-view matching can be used as an alternative or as a complementary method to TLS. Compared to TLS, the photogrammetric solution is a low cost one, as the acquisition system is limited to a high-performance digital camera and a few accessories only. Indeed, the stereo or multi-view matching process offers a cheap, flexible and accurate solution to get 3D point clouds. Moreover, the captured images might also be used for models texturing. Several software packages are available, whether web-based, open source or commercial. The main advantage of this photogrammetric or computer vision based technology is to get at the same time a point cloud (the resolution depends on the size of the pixel on the object), and therefore an accurate meshed object with its texture. After matching and processing steps, we can use the resulting data in much the same way as a TLS point cloud, but in addition with radiometric information for textures. The discussion in this paper reviews recording and important processing steps as geo-referencing and data merging, the essential assessment of the results, and examples of deliverables from projects of the Photogrammetry and Geomatics Group (INSA Strasbourg, France).
机译:文化遗产文献需要不同的方法和工具,以处理纪念碑和网站的复杂性。文档过程在过去几年中强烈发生变化,始终由技术驱动。为了保护工程,管理,评估,结构条件,归档,出版和研究的借鉴,精确地依赖于技术的进步(成像传感器,记录传感器,高速扫描,自动化,记录和处理数据的自动化)的进步(Catias等。,2008)。我们希望在本文中专注于文化遗产文档的记录方面,尤其是用于准确重建和可视化目的的几何和光电环境3D模型的产生。所选方法基于摄影测量密集匹配和地面激光扫描(TLS)技术的组合。这两种技术都有利弊,最近的进步改变了录制方法的方式。最佳工作流的选择依赖于站点配置,传感器的性能,以及标准作为几何,准确性,分辨率,地理转移,纹理和当然处理时间。 TLS技术(飞行时间或相移系统)广泛用于记录大型和复杂的物体和网站。通过密度立体声或多视图匹配从图像产生的点云可以用作TLS的替代或作为互补方法。与TLS相比,摄影测量溶液是低成本的,因为采集系统仅限于高性能数码相机和一些附件。实际上,立体声或多视图匹配过程提供了一种廉价,灵活,准确的解决方案来获取3D点云。此外,捕获的图像也可以用于纹理化的模型。有几个软件包,无论是基于Web的,开源还是商业广告。这种摄影测量或计算机视觉的技术的主要优点在于同时云(分辨率取决于对象上的像素的大小),因此是具有其纹理的准确网格对象。在匹配和处理步骤后,我们可以以与TLS点云的方式使用结果数据,但除了纹理的辐射信息。在本文的评论记录和重要的加工步骤,地理参考和数据合并,结果的基本评估,并从摄影测量与测绘集团(INSA斯特拉斯堡,法国)的项目可交付成果的例子讨论。

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