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矿业中的传感技术应用——系统综述。

Sensing Technology Applications in the Mining Industry-A Systematic Review.

机构信息

Associated Laboratory for Energy, Transports and Aeronautics (PROA/LAETA), Faculty of Engineering, University of Porto, 4200-465 Porto, Portugal.

RISCO, Civil Engineering Department, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Int J Environ Res Public Health. 2022 Feb 18;19(4):2334. doi: 10.3390/ijerph19042334.

Abstract

UNLABELLED

Introduction Industry 4.0 has enhanced technological development in all fields. Currently, one can analyse, treat, and model completely different variables in real time; these include production, environmental, and occupational variables. Resultingly, there has been a significant improvement in the quality of life of workers, the environment, and in businesses in general, encouraging the implementation of continuous improvement measures. However, it is not entirely clear how the mining industry is evolving alongside this industrial evolution. With this in mind, this systematic review aimed to find sensing technology applications within this sector, in order to assist the mining industry in its goal to evolve digitally.

METHODOLOGY

The research and reporting of this article were carried out by means of the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines.

RESULTS AND DISCUSSION

A total of 29 papers were included in the study, with sensors being applied in several fields, namely safety, management, and localisation. Three different implementation phases were identified regarding its execution: prototype, trial, and (already) implemented. The overall results highlighted that many mechanisms are in need of improvement in underground settings. This might be due to the fact that underground mining has particular safety challenges.

CONCLUSIONS

Ventilation and mapping are primary issues to be solved in the underground setting. With regard to the surface setting, the focus is directed toward slope stability and ways of improving it regarding monitoring and prevention. The literature screening revealed a tendency in these systems to keep advancing in technologically, becoming increasingly more intelligent. In the near future, it is expected that a more technologically advanced mining industry will arise, and this will be created and sustained by the optimisation of processes, equipment, and work practices, in order to improve both the quality of life of people and the health of the environment.

摘要

目的

介绍 工业 4.0 增强了各个领域的技术发展。目前,人们可以实时分析、处理和模拟完全不同的变量;这些变量包括生产、环境和职业变量。结果,工人的生活质量、环境以及一般企业都得到了显著改善,鼓励实施持续改进措施。然而,尚不清楚采矿业如何与这种工业演变同步发展。有鉴于此,本系统评价旨在寻找该行业内的传感技术应用,以协助采矿业实现数字化发展。

方法

本研究的研究和报告是通过系统评价和荟萃分析的首选报告项目(PRISMA)指南进行的。

结果和讨论

共有 29 篇论文被纳入研究,传感器在多个领域得到了应用,如安全、管理和定位。根据其执行情况,确定了三个不同的实施阶段:原型、试验和(已)实施。总体结果强调,许多机制在地下环境中需要改进。这可能是由于地下采矿存在特殊的安全挑战。

结论

通风和测绘是地下环境中需要解决的首要问题。至于地面环境,重点是边坡稳定性及其在监测和预防方面的改进方法。文献筛选表明,这些系统在技术上有不断进步的趋势,变得越来越智能化。在不久的将来,预计将出现一个技术更先进的采矿业,这将通过优化流程、设备和工作实践来创造和维持,以提高人们的生活质量和环境健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/939c/8872082/fe72006eb241/ijerph-19-02334-g001.jpg

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