4.5 Article

Improving coal mine safety with internet of things (IoT) based Dynamic Sensor Information Control System

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PHYSICS AND CHEMISTRY OF THE EARTH
卷 128, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.pce.2022.103225

关键词

Coal mine; Internet of things; Security; Wi-Fi microcontroller

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This paper discusses the hazards and challenges of working in coal mines and proposes an IoT based Dynamic Sensor Information Control System to address environmental issues. By utilizing sensor networks and control systems, combined with the technology of Industrial Internet of Things, it is possible to effectively monitor and control temperature, humidity, and carbon emissions in coal mines.
Coal is a key fuel source and an important resource for a wide range of businesses. The hazardous and potentially poisonous nature of the work also has to be taken into consideration. High temperatures, humidity, and the discharge of hazardous gases are just a few of the challenges coal miners confront on a daily basis. This produces a risky work environment that places employees at risk of serious injury or death. In this paper, IoT based Dynamic Sensor Information Control System (IoT-DSICS) has been proposed to solve warm humidity, precipi-tation, and unhealthy carbon emissions of the coal mine. Using sensor networks and control systems that have been deployed in many sectors, the Industrial Internet of Things (IIoT) is combined in this article. The present security examination of information management has been evaluated since the national coal mining output remains serious and significant accidents are successfully limited. Wi-Fi microcontroller system IIoT is used to monitor and operate the prototypes, activate fans in the Pittsburgh Investigation of Mine, and trigger a surface alert to track the low cost of opening alternative coal. The findings of this feasibility study existing communi-cation and tracking infrastructure are leveraged to examine the potential of IIoT in underground coal mines.

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