TAN Da-ke. Research of Relationship between Reading Card Efficiency and Distance of EPC Gen2 System[J]. Journal of Mine Automation, 2012, 38(2): 16-18.
Citation: TAN Da-ke. Research of Relationship between Reading Card Efficiency and Distance of EPC Gen2 System[J]. Journal of Mine Automation, 2012, 38(2): 16-18.

Research of Relationship between Reading Card Efficiency and Distance of EPC Gen2 System

More Information
  • It was found that influence of distance between label card and card reader on reading card efficiency of EPC Gen2 system is big in application of EPC Gen2 system: signal that some label cards fedback to card reader became too weaker to be identified with increasing of the distance; the signal sent by some label cards with weak reflection signal were more difficult to reach card reader with increasing of the distance when needing simultaneously identify many label cards. Quantized experiments were made for the above problems and got following result: it did not appear situation that label cards were missed reading when distance between label cards and card reader was 3 m and the reading time was short; it appeared situation that some label cards did not be read in 2 min when distance between label cards and card reader was 5 m. The experiment result showed that reading card rate and read rate of EPC Gen2 system decrease obviously with increasing of distance between label cards and card reader, EPC Gen2 system is not suitable for application of long distance and simultaneous identification with higher reliability.
  • Related Articles

    [1]CHEN Fabing, WU Hongjun, CUI Baoge, WANG Yuanjie, LI Yan. Analysis and optimization method of monitoring capability of coal mine microseismic monitoring network[J]. Journal of Mine Automation, 2022, 48(7): 96-104. DOI: 10.13272/j.issn.1671-251x.2022020048
    [2]HE Yaoyi. Discussion on evaluation index system and architecture of smart mine[J]. Journal of Mine Automation, 2017, 43(9): 16-20. DOI: 10.13272/j.issn.1671-251x.2017.09.003
    [3]DUAN Ruiwei. Design of coal mine hazard safety management system[J]. Journal of Mine Automation, 2017, 43(8): 94-97. DOI: 10.13272/j.issn.1671-251x.2017.08.019
    [4]付翔, 王然风, 袁继成. 煤矿乳化液泵变频/工频切换控制[J]. Journal of Mine Automation, 2017, 43(1): 81-84. DOI: 10.13272/j.issn.1671-251x.2017.01.020
    [5]SHU Lichu. Research of coal mine gas disaster risk evaluation method[J]. Journal of Mine Automation, 2015, 41(4): 48-51. DOI: 10.13272/j.issn.1671-251x.2015.04.013
    [6]XU Ji. Design of dynamic supervision system of major hazard source and its implementatio[J]. Journal of Mine Automation, 2014, 40(7): 90-93. DOI: 10.13272/j.issn.1671-251x.2014.07.024
    [7]WU Yan-chang, WANG Hong. Application of perception technology of Internet of Things in early warning system of dangerous sources[J]. Journal of Mine Automation, 2013, 39(9): 50-53. DOI: 10.7526/j.issn.1671-251X.2013.09.014
    [8]SHU Li-chun, ZHANG Che. Risk Pre-control Management Information System of Coal Mine Safety[J]. Journal of Mine Automation, 2011, 37(4): 18-22.
    [9]WANG Pei, LI Xin-chu. Discussion of Thought of Calculation and Risk Assessment of Single Danger Source of Coal Mine Accident[J]. Journal of Mine Automation, 2009, 35(4): 1-5.
    [10]SUN Fei, ZHANG Sheng-wen, FANG Xi-feng(. Research and Development of Remote Monitoring and Management System of Major Dangerous Sources[J]. Journal of Mine Automation, 2007, 33(4): 10-13.

Catalog

    Article Metrics

    Article views (77) PDF downloads (8) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return