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Review Article

Wireless Communication and Environment Monitoring in Underground Coal Mines – Review

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REFERENCES

  • L. K. Bandyopadhyay, S. K. Chaulya, and P. K. Mishra, Wireless Communication in Underground Mines: RFID-based Sensor Networking. Vol. XXVII, Springer editions, 2010, pp. 24–34 and 276–82.
  • S. Molina, I. Soto, and R. Carrasco, “Detection of gases and collapses in underground mines using WSN,” Int. Conf. Ind. Technol., pp. 219–25, Mar. 2011.
  • H. Jiang, J. Qian, and W. Peng, “Energy efficient sensor placement for tunnel wireless sensor network in underground mine,” Second Int. Conf. Power Electron. Intell. Transp. Syst., Vol. 3, pp. 219–22, Dec. 2009.
  • United States Department of Labor, Mine Safety and Health Administration. (2006). Available: http://frankwarner.typepad.com/free_frank_warner/2006/01/us_coal_mining_.html
  • P. Chen, and C. Zhao, “Area wireless sensor networks for personnel location under coalmine,” Second Conf. Ind. Electron. Appl., pp. 2882–5, May 2007.
  • W. Grote, “Wireless SISO channel propagation model for underground mines,” Workshop Autom. Min. Miner. Met. Ind., Vol. 1, pp. 1–6, 2009.
  • M. Ndoh, and G. Y. Delisle, “Geo-location in underground mines using wireless sensor networks,” Antennas Propag. Soc. Int. Symp., Vol. 3B, pp. 229–32, Jul. 2005.
  • X. Niu, X. Huang, Z. Zhao1, Y. Zhang, C. Huang, and L. Cui, “The design and evaluation of a wireless sensor network for mine safety monitoring,” Global Telecommunications Conference, Washington, DC, Nov. 2007, pp. 324–8.
  • L. Sydanheimo, M. Keskilammi, and M. Kivikoski, “Reliable mobile computing to underground mine,” Proc. Int. Conf. Com., Vol. 2, pp. 882–8, Jun. 2000.
  • K. Srinivasan, M. Ndoh, and K. Kaluri, “Advanced wireless networks for underground mine communications,” Proceedings of International Conference on Wireless Communications in Unusual and Confined Areas, Quebec, 2005, pp. 51–4.
  • W. Yang, and Y. Huang, “Wireless sensor network based coal mine wireless and integrated security monitoring information system,” Proceedings of the Sixth International Conference on Network, Washington, DC, Apr. 2007, pp. 70–4.
  • W. R. Heinzalman, A. Chandrakasan, and H. Balakrishnan, “An application specific protocol architecture for wireless microsensor networks,” IEEE Trans. Wirel. Commun., Vol. 1, Oct. 2002, pp. 660–70.
  • K. Thanigaivelu, and K. Murugan, “Grid-based clustering with predefined path mobility for mobile sink data collection to extend network lifetime in wireless sensor networks,” Acad. J. IETE Tech. Rev., Vol. 29, no. 2, pp. 133–47, Mar./Apr. 2012.
  • X. Wang, X. Zhao, Z. Liang, and M. Tan, “Deploying a wireless sensor network on the coal mines,” Proceedings of the International Conference on Network Sensor and Control, London, Apr. 2007, pp. 324–8.
  • P. Baronti, P. Pillai, Vince W. C. Chook, S. Chessa, A. Gotta, and Y. Fun Hu, “Wireless sensor networks: A survey on the state of the art and the 802.15.4 and ZigBee standards,” Comput. Commun., Vol. 30, pp. 1655–95, May 2007.
  • M. Bai, X. G. Zhao, Z. G. Hou, and M. Tian, “A wireless sensor network used in coal mines,” Proceedings of the International Conference on Network Sensor and Control, Apr. 2007, pp. 319–23.
  • Y. Li-min, L. Anqi, S. Zheng, and L. Hui, “Design of monitoring system for coal mine safety based on wireless sensor network,” International Conference on Mechatronics and Embedded Systems and Applications, Beijing, Oct. 2008, pp. 409–14.
  • A. Chehri, W. Farjow, H. T. Mouftah, and X. Fernando, “Design of wireless sensor network for mine safety monitoring,” 24th Canadian Conference on Electrical and Computer Engineering., Niagara Falls, May 2011, pp. 1532–5.
  • J. Song, Y. Zhu, and F. Dong, “Automatic monitoring system for coal mine safety based on wireless sensor network,” Cross Strait Quad-Regional Radio Science and Wireless Technology Conference, Harbin, Jul. 2011, pp. 933–6.
  • S. Wei, and L. Li-li, “Multi-parameter monitoring system for coal mine based on wireless sensor network technology,” International Conference on Industrial Mechatronics and Automation, Chengdu, May 2009, pp. 225–7.
  • K. Liu, L. Ning, and M. Zhang, “Research on the early warning technology of the mine safety based on wireless sensor networks,” International Conference of Advance in Energy Engineering, Beijing, Jun. 2010, pp. 138–41.
  • S. Vandana, and V. B. Sundheep, “Development of coalmine safety system using wireless sensor network,” Int. J. Comput. Sci. Eng., May 2011, Vol. 3, pp. 2076–85.
  • L. K. Bandyopadhyay, S. K. Chaulya, P. K. Mishra, Choure, and B. M. Baveja, “Wireless information and safety system in mine,” J. Sci. Ind. Res., Vol. 68, pp. 107–17, 2009.
  • T. Maity, P. S. Das, and M. Mukherjee, “Rescue and protection system for underground mine workers based on Zigbee,” Int. J. Adv. Comput. Eng. Archit., Dec. 2011, Vol. 1, no. 1, pp. 101–6.
  • Z. Sun, X. Zhang, H. Li, and A. Li, “The application of tiny OS beaconing WSN routing protocol in mine safety monitoring,” International Conference on Mechatronic and Embedded Systems and Applications, Beijing, Oct. 2008, pp. 415–9.
  • V. Pandit, and U. A. Rane, “Coal mine monitoring using ARM7 and ZigBee,” Int. J. Emerging Technol. Adv. Eng., Vol. 3, no. 5, pp. 352–9, May 2013.
  • A. Geetha, “Intelligent helmet for coal miners with voice over Zigbee and environmental monitoring,” Middle-East J. Sci. Res., Vol. 16, no. 12, pp. 1835–7, Jul. 2013.
  • A. Ali Hussien, and Ali H. Tawfeeq, “ZigBee-based wireless sensor network for temperature monitoring,” Int. J. Comput. Technol., Vol. 10, pp. 2062–70, Sept. 2013.
  • M. Li, and Y. Liu, “Underground structure monitoring with wireless sensor networks,” ACM Conference on Information Processing in Sensor Networks, Cambridge, MA, Apr. 2007, pp. 69–78.
  • M. Li, and Y. Liu, “Underground coal mine monitoring with wireless sensor networks,” ACM Trans. Sensor Netw., Mar. 2009, Vol. 5, no. 2, pp. 1–29.
  • Y. P. Zhang, G. X. Zheng, and J. H. Sheng, “Radio propagation at 900 MHz in underground coal mines,” IEEE Trans. Antennas Propag., Vol. 49, no. 5, pp. 757–62, Aug. 2001.
  • Y. P. Zhang, and Y. Hwang, “Characterization of UHF radio propagation channels in tunnel environments for microcellular and personal communications,” IEEE Trans. Veh. Technol., Vol. 47, pp. 283–96, Feb. 1998.
  • N. Chaamwe, W. Liu, and H. Jiang, “Seismic monitoring in underground mines: A case of mufulira mine in Zambia using wireless sensor networks for seismic monitoring,” Int. Conf. Electron. Inf. Eng., Vol. 1, pp. 310–4, Aug. 2010.
  • L. Wei, and C. Jianming, “GIS based on ZigBee and underground staff positioning System,” J. Ind. Mine Autom., Vol. 2, pp. 67–9, 2010.
  • K. R. Griffin, S. J. Schafrik, and M. E. Karmis, “Designing and modelling wireless mesh communications in underground coal mines,” SME Annu. Meeting Phoenix, pp. 1–4, Feb. 2010.
  • Z. Cao, H. Lu, and Q. He, “Research of underground staff positioning system based on wireless sensor network,” Int. Conf. Comput. Sci. Serv. Syst., pp. 600–3, Jun. 2011.
  • W. Nan, and S. Xue-li, “Research on WSN nodes location technology in coal mine,” Int. Forum Comput. Sci. Technol. Appl., Vol. 3, pp. 232–4, Dec. 2009.
  • F. Tian, Y. Dong, E. Sun, and C. Wang, “Nodes localization algorithm for linear wireless sensor networks in underground coal mine based on RSSI-similarity degree,” Seventh Int. Conf. Wirel. Comm. Netw. Mobile Comput. pp. 1–4, Sept. 2011.
  • W. Yan, Z. Ya-ru, and M. Yong, “Study on the coal mine personnel position system based on wireless body sensor networks,” Proceedings of the Fifth International Workshop on Wearable and Implantable Body Sensor Networks, HKSAR, Jun. 2008, pp. 75–8.
  • S. Qing-liang, Z. Zhi-xian, and Z. Zhen-chuan, “Research on safety monitoring system of mine based on Ad-hoc technology,” Int. Conf. Inf. Manage. Innov. Manage. Ind. Eng., Vol. 2, pp. 451–3, Dec. 2008.
  • W. Yuan, D. Guan, E.-N. Huh, and S. Lee, “Harness human sensor networks for situational awareness in disaster reliefs: A survey”, Acad. J. IETE Tech. Rev., Vol. 30, no. 3, pp. 240–5, May/Jun. 2013.
  • M.A. Mohammed, and A.A. Ahmad, “Toward secure vehicular Ad-hoc networks: A survey” Acad. J. IETE Tech. Rev., Vol. 29, no. 1, pp. 80–4, Jan./Feb. 2012.
  • S. Huh, U. Lee, H. Shim, and J. B. Park Noh, “Development of an unmanned coal mining robot and a tele-operation system,” Eleventh International Conference on Control, Automation and Systems, Kintex, Gyeonggi-do, Oct. 2011, pp. 31–5.
  • P. Raghuram, and V. Venktesh, “Enhancing mine safety with wireless sensor network using ZigBee technology,” J. Theor. Appl. Inf. Technol., Vol. 37, no. 2, pp. 261–7, Mar. 2012.
  • Z. Jianguo, G. Junyao, L. Kejie, L. Wei, and B. Shengjun, “Embedded control system design for coal mine detect and rescue robot,” Third Int. Conf. Comp. Sci. Inf. Technol., Vol. 6, pp. 64–8, Jul. 2010.
  • S. Jin-ling, G. Heng-wei, and S. Yu-jun, “Research on transceiver system of WSN based on V-MIMO underground coal mines,” Int. Conf. Comm. Mobile Comput., Vol. 2, pp. 374–8, Apr. 2010.
  • W. Zhou, “Design of video surveillance system based on 3G wireless network in underground coal mine,” Int. Conf. Uncertain. Reasoning Knowl. Eng., Vol. 1, pp. 248–50, Aug. 2011.
  • P. Darling, SME Mining Engineering Handbook, 3rd ed. Society for Mining, Metallurgy, and Exploration, Inc. (SME), Denver, CO, 2011, pp. 720–2.

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