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ACCURACY ASSESSMENT IN STRUCTURE FROM MOTION 3D RECONSTRUCTION FROM UAV-BORN IMAGES: THE INFLUENCE OF THE DATA PROCESSING METHODS

机译:无人机图像的运动3D重建中结构的准确性评估:数据处理方法的影响

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摘要

The evolution of Structure from Motion (SfM) techniques and their integration with the established procedures of classic stereoscopic photogrammetric survey have provided a very effective tool for the production of three-dimensional textured models. Such models are not only aesthetically pleasing but can also contain metric information, the quality of which depends on both survey type and applied processing methodologies. An open research topic in this area refers to checking attainable accuracy levels. The knowledge of such accuracy is essential, especially in the integration of models obtained through SfM with other models derived from different sensors or methods (laser scanning, classic photogrammetry ...). Accuracy checks may be conducted by either comparing SfM models against a reference one or measuring the deviation of control points identified on models and measured with classic topographic instrumentation and methodologies. This paper presents an analysis of attainable accuracy levels, according to different approaches of survey and data processing. For this purpose, a survey of the Church of San Miniato in Marcianella (Pisa, Italy), has been used. The dataset is an integration of laser scanning with terrestrial and UAV-borne photogrammetric surveys; in addition, a high precision topographic network was established for the specific purpose. In particular, laser scanning has been used for the interior and the exterior of the church, with the exclusion of the roof, while UAVs have been used for the photogrammetric survey of both roof, with horizontal strips, and façade, with vertical strips.
机译:结构从运动(SfM)技术的演变以及它们与经典立体摄影测量的既定程序的集成,为生成三维纹理模型提供了非常有效的工具。这种模型不仅美观,而且还可以包含度量信息,其质量取决于调查类型和应用的处理方法。这个领域的开放研究主题是检查可达到的准确性水平。这种准确性的知识是必不可少的,尤其是在通过SfM获得的模型与衍生自不同传感器或方法(激光扫描,经典摄影测量法...)的其他模型的集成中尤其如此。可以通过将SfM模型与参考模型进行比较或测量在模型上确定的控制点的偏差,并通过经典的地形仪器和方法进行测量,来进行准确性检查。本文根据调查和数据处理的不同方法,对可获得的精度水平进行了分析。为了这个目的,已经对Marcianella(意大利比萨)的San Miniato教堂进行了调查。该数据集是激光扫描与地面和无人机进行的摄影测量的集成。此外,针对特定目的建立了高精度地形网络。特别是,在不包括屋顶的情况下,激光扫描已用于教堂的内部和外部,而无人飞行器已用于水平条带的屋顶和垂直条带的立面的摄影测量。

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