Tracking Changes in Mining Object Topology on Rectangular and Hexagonal Grids

Q3 Engineering
S. Kramarov, O. Mityasova
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引用次数: 0

Abstract

The Earth remote sensing technologies (ERS) in exploration largely determine their effectiveness. Therefore, development of a new methodological support for the use of remote sensing data in predicting mining and geological conditions is a key priority area. The studies are based on the analysis of the assessment of information, social, and economic efficiency of remote sensing data application at mineral deposits. The role of application of new technologies (including remote ones) in the process of optimizing initial exploration stages is noted. The possibilities of using remote sensing data to assess general nature, direction, and extent of environmental changes due to mining activities are shown. A technique is proposed that can be used in the process of tracking changes in the topology of objects in the course of mining. The differences in the results obtained using the proposed technique for processing satellite images on rectangular and hexagonal grids (rasters) are considered. The advantages of using the hexagonal grid for tracking the boundaries of objects and formation of signs are shown. Practical examples - a number of open source satellite images processed using the proposed method - are presented. The study findings allow applying intelligent analysis of satellite imagery data with the subsequent identification of the earth's surface objects of interest. An example of using the obtained results together with specialized software tools (such as GIS INTEGRO geographic information system capable of solving geological problems, or the foreign ArcGIS system) for constructing contour maps of the territory and obtaining its description based on topological relations and metric information is shown.
在矩形和六边形网格上跟踪挖掘对象拓扑结构的变化
探索中的地球遥感技术在很大程度上决定了其有效性。因此,开发一种新的方法支持,利用遥感数据预测采矿和地质条件是一个关键的优先领域。这些研究是基于对遥感数据在矿床中应用的信息、社会和经济效率评估的分析。指出了新技术(包括远程技术)的应用在优化初始勘探阶段过程中的作用。显示了利用遥感数据评估采矿活动造成的环境变化的一般性质、方向和程度的可能性。提出了一种可以用于跟踪挖掘过程中对象拓扑结构变化的技术。考虑了使用所提出的在矩形和六边形网格(光栅)上处理卫星图像的技术所获得的结果的差异。展示了使用六边形网格跟踪物体边界和形成标志的优点。给出了实际例子——使用所提出的方法处理的一些开源卫星图像。这项研究结果使我们能够对卫星图像数据进行智能分析,从而随后识别出感兴趣的地球表面物体。举例说明了将所获得的结果与专门的软件工具(如能够解决地质问题的GIS INTEGRO地理信息系统或国外的ArcGIS系统)一起用于构建领土的等高线图并基于拓扑关系和度量信息获得其描述。
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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来源期刊
Gornye nauki i tekhnologii
Gornye nauki i tekhnologii Chemical Engineering-Process Chemistry and Technology
CiteScore
3.00
自引率
0.00%
发文量
22
审稿时长
15 weeks
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