On-site Demonstration of Topographic Surveying Techniques at Open-pit Mines using a Fixed-wing Unmanned Aerial Vehicle (Drone)

Sungjae Lee, Yosoon Choi
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引用次数: 14

Abstract

This study performed an on-site demonstration of the topographic surveying technique at a large-scale open-pit limestone mine in Korea using a fixed-wing unmanned aerial vehicle (UAV, Drone, SenseFly eBee). 288 sheets of aerial photos were taken by an automatic flight for 30 minutes under conditions of 300 m altitude and 12 m/s speed. Except for 37 aerial photos in which no keypoint was detected, 251 aerial photos were utilized for data processing including correction and matching, then an orthomosaic image and digital surface model with 7 cm grid spacing could be generated. A comparison of the X, Y, Z-coordinates of 4 ground control points measured by differential global positioning system and those determined by fixed-wing UAV photogrammetry revealed that the root mean squared errors were around 15 cm. Because the fixed-wing UAV has relatively longer flight time and larger coverage area than rotary-wing UAVs, it can be effectively utilized in large-scale open-pit mines as a topographic surveying tool.
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利用固定翼无人机进行露天矿地形测量技术现场演示
本研究利用固定翼无人机(UAV, Drone, SenseFly eBee)在韩国某大型露天石灰石矿山进行了地形测量技术的现场演示。在海拔300米、速度12米/秒的条件下,自动飞行30分钟,拍摄航拍照片288张。除37张未检测关键点的航拍照片外,利用251张航拍照片进行校正、匹配等数据处理,得到网格间距为7 cm的正交像和数字曲面模型。将差分全球定位系统测得的4个地面控制点的X、Y、z坐标与固定翼无人机摄影测量法测得的X、Y、z坐标进行比较,均方根误差在15 cm左右。由于固定翼无人机比旋翼无人机具有相对较长的飞行时间和较大的覆盖面积,可以有效地在大型露天矿中作为地形测量工具加以利用。
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