Utility of Large Scale Photogrammetric Techniques for 3-D Mapping and Precision Iron Ore Mining in Open Pit Areas

G. Muralikrishna, K. NookaRatnam
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引用次数: 1

Abstract

Precision mining and optimization of ore mining practise are gaining more importance as the global demand and competition for exploring the raw mineral material has grown manifold with increased industrialization world-wide. The overall process of mining activity involves ore identification, estimation, planning, excavation, transportation etc. The activity requires accurate mapping, monitoring and proper management of information pertaining to ore stockpile, mining pits and infrastructure of the areas on a regular basis. Of late, advancements in remote sensing techniques have paved a way for digital management of the mining activity. Especially, use of photogrammetric techniques for open pit mining are found to be highly accurate and effective in capturing, monitoring, mapping, managing the information pertaining to mining in a three dimensional (3D) space. Capturing of information pertaining to mines in 3-D perspective with respect to a specific location on the terrain is highly effective in accurate estimation of ore reserves, exploration and reclamation planning, ore continuity mapping and decision making. However, precision mining requires the use of large scale photogrammetric techniques with high resolution imagery of gigabytes size at mapping scales range from 1: 1000 to 1: 5000. In addition to that, the entire procedure involves the use of state-of-theart software and hardware for fast processing of data and subsequent digital output generation. Above all, involvement of skilled photogrammetric experts with specialised knowledge on open pit mining is very much essential for accurate interpretation and delineation of the resources. A project was carried out for the 3D mapping of iron ore stockpiles, pits and infrastructure areas at various sites. The stockpile and pit mapping is used for very precise volume measurements and the infrastructure mapping is used for general mine planning activities. High accuracy is critical, as the data and volume reports are used to calculate the value of the ore being extracted, and any errors in the mapping data can result in incorrect payments of large amounts of money. Since, the timeline specified to complete the task is very short, it is crucial that the staff doing the final volume computations and downstream processing should receive the accurate data, correctly coded and mapped according to the standards outlined. The study has demonstrated a typical workflow for the effective use of close range photogrammetric techniques for 3D mapping and iron ore mining in open pit areas. The study also sees a brighter outlook and challenges of upcoming aerial and terrestrial photogrammetric technology for precision mining.
大比例尺摄影测量技术在露天区铁矿三维测绘与精密开采中的应用
随着世界工业化程度的提高,全球对矿物原料的需求和勘探竞争日趋激烈,精密采矿和矿石开采实践的优化变得越来越重要。采矿活动的整个过程包括矿石识别、估计、规划、挖掘、运输等。这项活动需要定期准确地测绘、监测和适当管理与这些地区的矿石储存、采矿坑和基础设施有关的资料。最近,遥感技术的进步为采矿活动的数字化管理铺平了道路。特别是,在露天矿开采中使用摄影测量技术,在三维(3D)空间中捕获、监测、测绘和管理与采矿有关的信息方面,被发现是高度准确和有效的。在地形上的特定地点以三维视角获取有关矿山的信息,对于准确估计矿石储量、勘探和复垦规划、绘制矿石连续性图和决策非常有效。然而,精确采矿需要使用大规模摄影测量技术,在1:1000到1:5000的地图比例尺范围内使用千兆字节大小的高分辨率图像。除此之外,整个程序还涉及使用最先进的软件和硬件来快速处理数据并随后产生数字输出。最重要的是,具有露天采矿专业知识的熟练摄影测量专家的参与对于准确解释和描绘资源是非常必要的。开展了一个项目,对各个地点的铁矿石库存、矿坑和基础设施区域进行三维测绘。储存和矿坑测绘用于非常精确的体积测量,基础设施测绘用于一般的矿山规划活动。高精度是至关重要的,因为数据和数量报告用于计算正在提取的矿石的价值,而地图数据中的任何错误都可能导致错误的支付大量资金。由于指定的完成任务的时间非常短,因此进行最终体积计算和下游处理的工作人员应该收到准确的数据,并根据概述的标准进行正确编码和映射,这一点至关重要。该研究展示了一种典型的工作流程,可以有效地将近景摄影测量技术用于露天区的三维测绘和铁矿石开采。该研究还看到了未来用于精确采矿的空中和地面摄影测量技术的光明前景和挑战。
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