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金属矿山 ›› 2026, Vol. 55 ›› Issue (3): 1-10.

• 《金属矿山》创刊60周年成果专栏 •    下一篇

矿山遥感发展的思考:内涵、关键技术与典型应用

刘善军,包妮沙,毛亚纯,魏恋欢,贺黎明   

  1. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2026-03-15 发布日期:2026-03-31
  • 作者简介:刘善军(1965—),男,教授,博士,博士研究生导师。
  • 基金资助:
    国家自然科学基金项目(编号:41771404)。

Thoughts on the Development of Remote Sensing in Mines:Connotation,Key Technologies and  Typical Applications

LIU Shanjun,BAO Nisha,MAO Yachun,WEI Lianhuan,HE Liming   

  1. School of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China
  • Online:2026-03-15 Published:2026-03-31

摘要: 目前,我国矿山正在由过去的机械化、数字化发展阶段向智能化阶段迈进,遥感技术作为时空智能中的
关键技术在智能矿山建设中发挥着重要作用。在这个过程中,学术界出现了诸如矿山遥感、矿区环境遥感、矿山地质
灾害遥感、矿山生态环境遥感等诸多术语,而对于这些术语的内涵和外延未得到足够关注,影响了遥感技术在矿山的
应用与发展。针对此问题,在分析矿山特点及资源开发引发的系列变化与问题的基础上提出了矿山遥感的内涵,指
出矿山遥感是利用天—空—地—下遥感技术对矿山构成要素及矿山生产过程引发的问题或现象开展的探测和监测,
主要包括矿山资源遥感、矿山环境遥感和矿山灾害遥感,支持矿山绿色和可持续发展。其中,矿山资源遥感是利用遥
感技术进行矿山岩矿识别、矿石品位反演、矿体圈定、矿产资源量估测以及资源变化检测等;矿山环境遥感是利用遥
感技术进行矿山环境要素监测,包括不同地物类型覆盖变化监测、地表水体污染监测、土壤(尾矿库)水分监测和重金
属污染监测等;矿山灾害遥感是利用遥感技术进行各类矿山灾害的探测和监测,这些灾害类型包括矿山滑坡、崩塌、
地裂缝、开采沉陷、尾矿库溃坝等。继而,界定了矿山遥感的外延,并分析了矿山遥感与矿区遥感的区别与联系。在此
基础上,结合团队科研实践介绍了一些矿山遥感中的关键技术,包括面向矿山资源遥感的岩矿光谱智能感知技术、面
向矿山灾害遥感的露天矿山滑坡天空地多源协同监测技术,以及面向矿区环境遥感的多波段高光谱联合分析技术,
并讨论了这些关键技术相应的典型应用方向。最后,剖析了3 项关键技术发展面临的挑战并展望了未来发展方向。
认为现阶段存在的挑战在于研发适应不同矿山地质特点的岩矿光谱识别模型、适应于不同滑坡类型的灾害预警模
型,以及适宜于矿区环境多因素、多属性、多尺度特点的遥感监测技术,从而保证矿山遥感的有效性和可行性。“十五
五”乃至更长一段时间该领域发展需聚焦于天—空—地—下多平台、多模态、多频次遥感技术开发,实现多源遥感技
术的集成和协同创新,更好地服务于矿山绿色、智能化发展。

Abstract: Currently,China′s mining industry is transitioning from its previous stages of mechanization and digitalization
to that of intelligence. As a key component of spatio-temporal intelligence,remote sensing plays a crucial role in the construction
of smart mines. During this process,the academic community has introduced various terms such as mine remote sensing,
mining area environment remote sensing,mining-related geological disaster remote sensing,and mine ecological environment remote
sensing,etc. However,the connotation and extension of these terms have not received sufficient attention,hindering the
application and development of remote sensing technology in the mining industry. To address this issue,this paper proposes the
connotation of mine remote sensing based on an analysis of mine characteristics and the series of changes and issues arising
from resource development. It is defined that mine remote sensing involves the detection and monitoring of mine constituent elements
and the problems or phenomena caused by mine production processes using space-air-ground-underground remote sensing
technology. This primarily includes the mine resource remote sensing,mine environment remote sensing,and mining-related
disaster remote sensing,supporting the green and sustainable development of mines. Specifically,mine resource remote sensing refers to the use of remote sensing technology for mine rock and mineral identification,ore grade inversion,orebody delineation,
mineral resource estimation and detection of resource changes,etc. Mine environment remote sensing involves the monitoring of
mine environmental elements,including changes in land cover types,surface water pollution monitoring,soil (tailings pond)
moisture monitoring,and heavy metal pollution monitoring,etc. Mining-related disaster remote sensing pertains to the detection
and monitoring of various mine disasters,including mine landslides,collapses,ground fissures,mining subsidence,and tailings
dam failures,etc. Subsequently,the extension of mine remote sensing is defined,and the difference and connection between
mine remote sensing and mining area remote sensing are analyzed. Based on this,combined with the team′s scientific research
practices,some key technologies in mine remote sensing are introduced. These include the rock and mineral spectral intelligent
perception technology for mine resource remote sensing,the multi-source collaborative landslide monitoring technology for minerelated
disaster remote sensing,and the multi-band hyperspectral joint analysis technology for mining area environment remote
sensing. Typical applications of these key technologies are also provided. Finally,the challenges facing the development of the
three key technologies are analyzed and the future development direction is envisioned. It is believed that the challenges at this
stage lie in the development of rock and ore spectral identification models adapted to the geological characteristics of different
mines,disaster early warning models adapted to different types of landslides,and remote sensing monitoring technologies suitable
for the multifactorial,multi-attribute and multi-scale characteristics of the mining area environment,so as to ensure the effectiveness
and feasibility of mine remote sensing. In the "15th Five-Year Plan" and even for a longer period of time,the development
of this field needs to focus on the development of multi-platform,multi-modal and multi-frequency remote sensing
technology in the space-air-ground-underground,so as to realize the integration and synergistic innovation of multi-source remote
sensing technology and to better serve the green and intelligent development of mines.

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