img

Wechat

Adv. Search

Gold Science and Technology

Previous Articles     Next Articles

Experiment Research on Propagation Characteristics of WSN at Different Channel in Mine

LI Ning1,YE Haiwang1,WANG Liguan2,LEI Tao1   

  1. 1.School of Resources and Environment Engineering,Wuhan University of Technology,Wuhan   430070,Hubei,China;
    2.School of Resources and Safety Engineering,Central South University,Changsha   410083,Hunan,China
  • Received:2016-07-25 Revised:2016-11-23 Online:2017-02-28 Published:2017-05-12

Abstract:

In order to study the propagation characteristics of the wireless sensor network(WSN) signal and deploy reasonable wireless sensor nodes in the mine roadway.Three types of wireless sensor nodes were designed,which work on 2.4 GHz,780 MHz and 433 MHz with three chips of CC2420,CC1020 and CC1100.The received signal strength index (RSSI) and the average packet loss rate (PLR) of the wireless sensor node was tested and analyzed by changing the wireless communication distance and transmission power in a typical mine working as the experimental environment.The experimental results showed that RSSI of wireless sensor nodes in three different bands decreased with the increasing of communication distance.The experiments demonstrated that the relationship of the received signal strength and communication distance caused attenuation to exist according to a logarithmic model.Through simulation found that wireless signal can cover all mine roadway when using both 15 dBm and 5 dBm transmission power.When the transmitting power was 15 dBm,the wireless signal communication success rate got higher.Therefore,when the wireless sensor network was applied in the mine roadway environment,the 780 MHz band WSN was even superior as to transmission and communication quality performance.Transmitted power can be chosed according to the actual situation.

Key words:  mine, wireless sensor networks, received signal strength index, packet loss rate

CLC Number: 

  • TD65

[1] Wu Lixin,Wang Yunjia,Ding Enjie,et al.Thirdly study on digital mine:Serve for mine safety and intellimine with support from IoT [J].Journal of China Coal Society,2012,37(3):357-365.[吴立新,汪云甲,丁恩杰,等.三论数字矿山——借力物联网保障矿山安全与智能采矿[J].煤炭学报,2012,37(3):357-365.]  
[2] Tilas S,Abu-Ghazaleh N B,Heinzelman W.A taxonomy of wireless micro-sensor network models[J].Mobile Computing and Communications Review,2002,1(2):1-8.
[3] Akyildiz I F,Su W,Sankarasubramaniam Y,et al.A survey on sensor networks[J].IEEE Communications Magazine,2002,40(8):102-114.
[4] Li Jianzhong,Li Jinbao,Shi Shengfei.Concepts,issues and advance of sensor networks and data management of sensor networks[J].Journal of Software,2003,14(10):1717-1726.[李建中,李金宝,石胜飞.传感器网络及其数据管理的概念、问题与进展[J].软件学报,2003,14(10):1717-1726.]  
[5] Silva I,Guedes L A,Ponugal P,et al.Reliability and availability evaluation of wireless sensor networks for industrial applications[J].Sensors,2012,12(1):806-838.
[6] Yu R,Zhang Y,Song L Y,et al.Joint optimization of power,packet forwarding and reliability in MIMO wireless sensor networks[J].Mobile Networks and Applications,2011,16(6):1-11.
[7] Zhang Yueping,Zhang Wenmei,Sheng Jianhuan,et al.Characterization of UHF radio propagation channels in a long wall face of a coal mine[J].Journal of China Coal Society,2000,25(4):416-419.[张跃平,张文梅,盛剑桓,等.UHF无线电波在长壁工作面中传播特性的研究[J].煤炭学报,2000,25(4): 416-419.] 
[8] Lopez R J A,Soto F,Suardiaz J,et al.Wireless sensor networks for precision horticulture in Southern Spain[J].Computers and Electronics in Agriculture,2009,68(3):25-35.
[9] Park D,Kang B,Cho K,et al.A study on greenhouse automatic control system based on wireless sensor network[J].Wireless Personal Communications,2011,56(1):117-130.
[10] Li Wei.Study on the signal attenuation during transmission in underground laneway[J].Mining Research and Development,2005,25(5):62-64.[李伟.GSM信号在井下巷道传输中的衰落研究[J].矿业研究与开发,2005,25(5):62-64.]  
[11] Park D,Park J.Wireless sensor network-based greenhouse environment monitoring and automatic control system for dew condensation prevention[J].Sensors,2011,11(4):3640-3651.
[12] Nadimi E S,Jrgensen R N,Blanes-Vidal V,et al.Monitoring and classifying animal behavior using Zigbee-based mobile ad hoc wireless sensor networks and artificial neural networks[J].Computers and Electronics in Agriculture,2012,82(1):44-54.
[13] Wang D H,Zhang Q Q,Sun Y F.Design of wireless voice communication system in underground coal mine based on Zigbee[J].Applied Mechanics and Materials,2014,548(4):1402-1406.
[14] Wang Y Q,Liu X R.VLF communication of minerescue[J]. International Journal of Advancements in Computing Technology,2012,4(4):100-105.
[15] Guo Wenchuan,Cheng Hanjie,Li Ruiming,et al.Greenhouse monitoring system based on wireless sensor networks[J].Transactions of the Chinese Society for Agricultural Machinery,2010,41(7):181-185.[郭文川,程寒杰,李瑞明,等.基于无线传感器网络的温室环境信息监测系统[J].农业机械学报,2010,41(7):181-185.]   
[16] Meng Lei,Ding Enjie,Wu Lixin.Research on key technologies of water inrush perception based on mine IoT[J].Journal of China Coal Society,2013,38(8):1397-1403.[孟磊,丁恩杰,吴立新.基于矿山物联网的矿井突水感知关键技术研究[J].煤炭学报,2013,38(8):1397-1403.]   
[17] Li Ning,Wang Liguan,Jia Mingtao,et al.Faults intelligent diagnosis system for fan based on information fusion[J].Journal of Central South University (Science and Technology),2013,44(7):2861-2866.[李宁,王李管,贾明涛,等.基于信息融合理论的风机故障诊断 [J].中南大学学报(自然科学版),2013,44(7):2861-2866.]   
[18] Suri A,Iyengar S S,Cho E.Ecoinformatics using wireless sensor networks:A overview[J].Ecological Information,2006,1(3):287-293.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!