开发利用旋翼无人机制作露天矿大比例尺地形图的程序

Long Quoc Nguyen, Tam Thanh Thi Le, C. Le, Cuong Xuan Cao, Minh Tuyet Dang, Dung Ba Nguyen
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摘要

近年来,随着无人机技术的飞速发展,该技术在测绘领域的应用越来越广泛。本文介绍了在越南开发一种生产露天矿大比例尺地形图的程序的结果,其中无人驾驶飞行器(UAV)用于收集数据。为了创建一个确保地形图制作准确性、安全性和效率的程序,在越南应用了测量和编辑地形图的理论和官方规定,特别是在矿山,以及使用无人机。该程序是专门为垂直起降(旋转)无人机开发的。在东大麦煤矿和龙山采石场两个露天煤矿进行了飞行高度计算、确定合适起飞位置和图像采集等实验,验证了该方法。数字表面模型(DSM)和正射影像是由获取的照片生成的,使用地面控制点(GCP)与VN-2000坐标系进行地理参考,并通过检查点进行评估。此外,实验还包括对各种GCP网络组合的研究,以确定每种情况下的最优GCP数。实验结果表明,该方法合理、正确、简单、安全、有效。无人机制作的正射影像、DSM、地形图等产品精度高,符合所有国家标准要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing a procedure to produce large-scale topographic maps of open-pit mines using rotary wing unmanned aerial vehicles
Recently, the rapid development of unmanned aerial vehicle (UAV) has led to increasingly popular applications of this technology in the field of surveying and mapping. This article presents the result of developing a procedure to produce large-scale topographic maps for open-pit mines in Vietnam in which unmanned aerial vehicles (UAV) are used to collect data. With the goal of creating a procedure that ensures accuracy, safety, and efficiency for the production of topographic maps, the theories and official regulations for measuring and editing topographic maps in general and in mines in particular, as well as using drones in Vietnam have been applied. The procedure is specifically developed for the vertical takeoff and landing (rotary) UAVs. Experiments consisting of the flight altitude calculation, determining the appropriate take-off position, and image acquisition were conducted at two open-pit mines, namely Dong Da Mai coal mine and Long Son quarry to verify the procedure. The digital surface models (DSM) and orthophotos are generated from the acquired photos, georeferenced to the VN-2000 coordinate system using ground control points (GCP), and evaluated with checkpoints. In addition, the experiment included the investigation of the various combination of GCP networks to determine the optimal GCP number for each case. Experimental results show that the procedure is logical, correct, straightforward, safe, and effective. UAV resulted products, such as orthophotos, DSM, and topographic maps were accurate and met the requirements of all the national standards.
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