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Zigbee-based remote environmental monitoring for smart industrial mining

Published: 02 October 2019 Publication History

Abstract

Wireless sensor networks (WSNs) consist of large number of small and low-cost devices equipped with sensing and communication facilities to monitor the environment. The collected data are transmitted to one or more base stations which can attach to other networks and/or databases. WSNs show particular promises in applications that involve complex, human-made systems such as underground mines, factory and industrial installation. In this paper, smart sensor network architecture for temperature and fire monitoring in underground mine is evaluated. Based on application requirements and site surveys, we develop a general architecture for this class of industrial applications. The architecture is based on multiple complementary wireless communications access networks between the environment and external environment, by using IEEE802.15/ZigBee, IEEE 802.11 and the Internet.

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Cited By

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  • (2023)Low-Cost Sensors Technologies for Monitoring Sustainability and Safety Issues in Mining Activities: Advances, Gaps, and Future Directions in the Digitalization for Smart MiningSensors10.3390/s2315684623:15(6846)Online publication date: 1-Aug-2023
  • (2023)A Systematic Review on Implementation of Internet-of-Things-Based System in Underground Mines to Monitor Environmental ParametersJournal of The Institution of Engineers (India): Series D10.1007/s40033-023-00541-3105:2(1273-1289)Online publication date: 5-Sep-2023
  • (2022)Research on Location Estimation for Coal Tunnel Vehicle Based on Ultra-Wide Band EquipmentEnergies10.3390/en1522852415:22(8524)Online publication date: 15-Nov-2022
  • Show More Cited By

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cover image ACM Other conferences
SCA '19: Proceedings of the 4th International Conference on Smart City Applications
October 2019
788 pages
ISBN:9781450362894
DOI:10.1145/3368756
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 02 October 2019

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Author Tags

  1. data collection
  2. industrial mining
  3. keywords wireless sensor networks
  4. monitoring
  5. smart space
  6. underground mine

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Cited By

View all
  • (2023)Low-Cost Sensors Technologies for Monitoring Sustainability and Safety Issues in Mining Activities: Advances, Gaps, and Future Directions in the Digitalization for Smart MiningSensors10.3390/s2315684623:15(6846)Online publication date: 1-Aug-2023
  • (2023)A Systematic Review on Implementation of Internet-of-Things-Based System in Underground Mines to Monitor Environmental ParametersJournal of The Institution of Engineers (India): Series D10.1007/s40033-023-00541-3105:2(1273-1289)Online publication date: 5-Sep-2023
  • (2022)Research on Location Estimation for Coal Tunnel Vehicle Based on Ultra-Wide Band EquipmentEnergies10.3390/en1522852415:22(8524)Online publication date: 15-Nov-2022
  • (2022)Trends in Smart Helmets With Multimodal Sensing for Health and Safety: Scoping ReviewJMIR mHealth and uHealth10.2196/4079710:11(e40797)Online publication date: 15-Nov-2022
  • (2022)WSN Protocols and Security Challenges for Environmental Monitoring Applications: A SurveyJournal of Sensors10.1155/2022/16285372022(1-21)Online publication date: 21-Aug-2022
  • (2022)Cybersecurity of Industrial Cyber-Physical Systems: A ReviewACM Computing Surveys10.1145/351041054:11s(1-35)Online publication date: 9-Sep-2022
  • (2022)Wireless Monitoring of Environmental Parameters for Underground Mining using Internet of Things with LoRa Transceiver Module2022 IEEE 7th International Conference on Recent Advances and Innovations in Engineering (ICRAIE)10.1109/ICRAIE56454.2022.10054280(224-229)Online publication date: 1-Dec-2022
  • (2021) (1 + ϵ) 2 -and Polynomial-Time Approximation Algorithms for Network Lifetime Maximization With Relay Hop Bounded Connected Target Coverage in WSNs IEEE Sensors Journal10.1109/JSEN.2021.305196021:7(9577-9599)Online publication date: 1-Apr-2021
  • (2021)Theory and Practice of Implementing a Successful Enterprise IoT Strategy in the Industry 4.0 EraProcedia Computer Science10.1016/j.procs.2021.09.239192:C(4609-4618)Online publication date: 1-Jan-2021
  • (2021)MAC Protocols for Industrial Delay-Sensitive Applications in Industry 4.0: Exploring Challenges, Protocols, and RequirementsProcedia Computer Science10.1016/j.procs.2021.09.232192(4542-4551)Online publication date: 2021
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