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首页> 外文期刊>Journal of Archaeological Science >Method for photogrammetric surveying of archaeological sites with light aerial platforms
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Method for photogrammetric surveying of archaeological sites with light aerial platforms

机译:用轻型空中平台进行摄影遗址摄影测量的方法

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摘要

In this paper, we describe a complete methodology for performing photogrammetric surveying of archaeological sites using light aerial platforms or unmanned aerial vehicle (UAV) systems. Traditionally, the main problem with using these platforms is the irregular geometry of the photographs obtained. These irregular image block patterns are occasioned by uncontrolled circumstances (e. g. effect of wind, lack of flight control, etc.) which generate high imprecision in the positioning of camera stations. The method proposed here allows the execution of the photogrammetric flight following the predicted parameters determined in mission planning (camera focal length, photo scale, ground sample distance -GSD-, overlaps, etc.) so we can obtain regular flight geometries. Our method allows the use of conventional photogrammetric data reduction methods based on the use of stereoscopic photogrammetric workstations. Although flights with irregular patterns can allow the formation of stereo pairs within certain limits, conventional photogrammetric procedures often have great difficulty in processing these irregular image blocks. For this reason this system raises the staking out of the camera positions by using a robotized total station and a mini prism situated on the platform. This method is applied to a real photogrammetric survey of an archaeological site of the Tartessic epoch in Southern Spain. The results obtained, confirmed by a quality control of the photogrammetric flight, have demonstrated the viability of this methodology even when moderate wind effects appear.
机译:在本文中,我们描述了使用轻型空中平台或无人飞行器(UAV)系统对考古现场进行摄影测量的完整方法。传统上,使用这些平台的主要问题是所获得照片的不规则几何形状。这些不规则的图像块图案是由不受控制的情况(例如,风的影响,缺乏飞行控制等)引起的,这些情况在相机站的定位中产生高度不精确性。这里提出的方法允许按照任务计划中确定的预测参数(相机焦距,照片比例,地面样本距离-GSD-,重叠等)执行摄影飞行,因此我们可以获得常规的飞行几何形状。我们的方法允许使用基于立体摄影测量工作站的常规摄影测量数据缩减方法。尽管具有不规则图案的飞行可以允许在特定限制内形成立体对,但是传统的摄影测量程序通常在处理这些不规则图像块方面有很大的困难。因此,该系统通过使用自动全站仪和平台上的微型棱镜来提高摄像机位置的固定性。该方法用于西班牙南部特尔泰西时期的真实摄影测量。通过摄影测量飞行的质量控制所获得的结果证明了该方法的可行性,即使出现中等的风效应。

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