Performance Analysis of a Drone Development Kit-derived Digital Elevation Model

Mehmet Doğruluk, İlyas Yalçin
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Abstract

Surface modeling constitutes is a crucial aspect in numerous engineering inquiries and earth observation endeavors. In contemporary times, the acquisition of geospatial data essential for the digital representation of local regions is increasingly facilitated through drone-based methodologies, supplanting conventional terrestrial data gathering techniques. The market presently hosts a plethora of cost-effective, "ready-to-fly" unmanned aerial vehicles (UAVs), offering users the capability to generate photogrammetric outputs, including high geometric precision Digital Elevation Models (DEMs). Moreover, modularly structured drone development kits, designed for multifarious applications, are readily accessible for purchase. These drone kits offer an economically advantageous platform that users can customize to suit their specific needs. Nevertheless, the geometric precision of DEMs created using these kits hinges upon the capabilities of the imaging and navigation systems, in addition to the stabilization of the platform during autonomous flight. In this study, using a drone development kit and a commercial drone, simultaneous image acquisition was performed for the same study area and two different DEMs were produced. The efficacy of the DEM generated using the drone development kit was assessed through a comparative analysis with the DEM obtained from a commercial drone. In addition, geometric accuracy assessment was conducted for both DEMs using ground control points. The findings reveal the usability of drone development kits in precision DEM production, as well as their limitations.
无人机开发套件衍生数字高程模型的性能分析
地表建模是许多工程研究和地球观测工作的一个重要方面。在当代,通过基于无人机的方法,取代传统的地面数据收集技术,越来越方便地获取对局部区域的数字表示至关重要的地理空间数据。目前市场上有大量具有成本效益的“随时可飞”无人机(uav),为用户提供生成摄影测量输出的能力,包括高几何精度数字高程模型(dem)。此外,模块化结构的无人机开发套件,设计用于各种应用,很容易购买。这些无人机套件提供了一个经济上有利的平台,用户可以定制以满足他们的特定需求。然而,使用这些套件创建的dem的几何精度取决于成像和导航系统的能力,以及自主飞行期间平台的稳定性。在本研究中,使用无人机开发工具包和商用无人机,对同一研究区域进行了同时图像采集,并产生了两种不同的dem。通过与商用无人机获得的DEM进行对比分析,评估了使用无人机开发工具包生成的DEM的有效性。此外,利用地面控制点对两种dem进行几何精度评估。研究结果揭示了无人机开发套件在精确DEM生产中的可用性,以及它们的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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