Coupling Satellite Images and Unmanned Aerial Vehicle Data to Monitor the Exploitation of Open-Pit Mine

T. Son, Q. Le, T. Tong, Vu Giang Nguyen, Phan Long Vu, L. T. T. Ha
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Abstract

Discovering the variation of an open-pit mine in vertical, horizontal, and temporal dimensions as well to characterize the stages and the trends of the exploitation are indispensable tasks which provide information supporting decision making and planning for sustainable development of the mining industry. Remote sensing technique with the advantages of multi-spatial, multi-spectral, multi-temporal resolution is a promising solution to meet the  information requirement. This study proposes an approach of coupling the high-resolution satellite images and Unmanned Aerial Vehicle (UAV) data to observe the variation of Tan An open rocky mine during its lifetime. Five satellite images with the resolution of 0.5 m acquired in 2006, 2012, 2014, 2016, 2018, and two ortho-images with 0.034 m resolution constructed from UAV photos captured in 2019, 2020 are used to make land cover maps. The analysis of land cover changes discovers 3 stages of open-pit mine exploitation consisting of unprompted exploitation, exploiting outbreak and stable exploitation corresponding to the changes in the mine. Besides, two Digital Surface Models (DSM) constructed by UAV photos are compared to calculate the elevation and volume changes. The assessment of the correlation between elevation change and land cover change indicates that the mineral exploitation is in the vertical range from 645 m to 660 m, and the exploitation trend is following the horizontal expansion rather than the deep excavation. Additionally, this experiment results in 79,422 m3 of mineral taken from the mine, and 34,022 m3 of soil used for the restoration within a year from June 2019 to June 2020.
卫星图像与无人机数据耦合监测露天矿开采
发现露天矿在垂直、水平和时间维度上的变化,刻画开采阶段和发展趋势,为矿山可持续发展的决策和规划提供信息支持,是一项必不可少的任务。遥感技术具有多空间、多光谱、多时间分辨率的优势,是满足信息需求的一种很有前途的解决方案。本研究提出了一种高分辨率卫星图像与无人机(UAV)数据耦合的方法来观测谭安露天岩石矿山的生命周期变化。利用2006年、2012年、2014年、2016年、2018年获取的5张分辨率为0.5 m的卫星图像,以及2019年、2020年无人机拍摄的2张分辨率为0.034 m的正射影图制作土地覆盖地图。通过对地表覆盖变化的分析,发现露天矿开采与矿山变化相适应,可分为自发开采、开采爆发和稳定开采3个阶段。此外,对比了两种无人机照片构建的数字曲面模型(DSM),计算了高程和体积变化。高程变化与土地覆被变化的相关性评价表明,矿区矿产开采处于645 ~ 660 m的垂直范围内,开采趋势遵循水平扩展而非深度开挖。此外,在2019年6月至2020年6月的一年内,该试验从矿山中提取了79,422 m3的矿物,并使用了34,022 m3的土壤进行修复。
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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