SUN Ji-ping, WANG Fu-zeng. Testing and Analyzing of EMI in Central Substation of Coal Mine Underground[J]. Journal of Mine Automation, 2010, 36(4): 4-6.
Citation: SUN Ji-ping, WANG Fu-zeng. Testing and Analyzing of EMI in Central Substation of Coal Mine Underground[J]. Journal of Mine Automation, 2010, 36(4): 4-6.

Testing and Analyzing of EMI in Central Substation of Coal Mine Underground

More Information
  • Through testing and analyzing electromagnetic environment of central substation of coal mine underground, following conclusions were gotten: 1 There is low-frequency interference nearby high-voltage switch during normal operation of equipments in central substation. 2 When transformers of center substation run normally, the EMI is mainly below 500 MHz and a greater interference appears nearby 100 MHz, and the maximum interference is 40 dB?μV/m higher than background noise or so. 3 When the switch in central substation is taken on or off instantly, there will be a greater EMI which is mainly below 1.5 GHz. The larger interference is in low-frequency and the maximum EMI reaches 193 dB?μV/m. 4 When equipments of central substation are in normal working, radiation of electromagnetic field reaches 1 standard level 1 V/m. But when the switch is taken on or off instantly, the EMI is larger than 2 stardard level of GB9175-88 environmental health standards of electromagnetic waves because the EMI is larger below 1 MHz.
  • Related Articles

    [1]DONG Peipei, XU Yanhong, WANG Anyi, ZHANG Zhiwen, BAI Tingting. Design of a mine high isolation tri-band MIMO antenna[J]. Journal of Mine Automation, 2023, 49(5): 127-132. DOI: 10.13272/j.issn.1671-251x.2022090089
    [2]GUAN Hengzhu, DING Guibao, XIAO Qu. Research of selection method of transformer capacity for mine vertical shaft constructio[J]. Journal of Mine Automation, 2016, 42(1): 67-70. DOI: 10.13272/j.issn.1671-251x.2016.01.020
    [3]ZHAI Wenyan, SUN Yanjing, LI Song, LIANG Dihui. Power allocation and capacity optimization of multi-relay cooperative communication system in tunnel[J]. Journal of Mine Automation, 2015, 41(11): 21-25. DOI: 10.13272/j.issn.1671-251x.2015.11.006
    [4]SUN Cuizhen, MAO Xinrong, MA Yanjun. Research of underground OFDM channel estimation algorithm[J]. Journal of Mine Automation, 2014, 40(9): 39-43. DOI: 10.13272/j.issn.1671-251x.2014.09.010
    [5]YANG Qingxiang, LI Shuo, QIN Wenguang, WANG Haiyan. Analysis of capacity problem of underground video monitoring system[J]. Journal of Mine Automation, 2014, 40(3): 35-37. DOI: 10.13272/j.issn.1671-251x.2014.03.010
    [6]LI Meixiang, ZHOU Zhong, ZHANG Yong. Study of large capacity power supply used for coal mine emergency facilities[J]. Journal of Mine Automation, 2014, 40(3): 9-11. DOI: 10.13272/j.issn.1671-251x.2014.03.002
    [7]CUI Jie, XU Zhao, HUO Yu. Calculation of Coherence Bandwidth of Mine Wireless Channel[J]. Journal of Mine Automation, 2012, 38(8): 36-40.
    [8]QI Ben-sheng, LIU Yu. Study on Common Channel Transmission with Speech and Signals for Inclined Shaft Man Vehicles[J]. Journal of Mine Automation, 1999, 25(2): 16-18.
    [9]Li Yong, Zhu Jian-ming, Hu Yu. Research in Implementation of Radio Signaling, Centralizing and Locking System by Using Leaky Channel[J]. Journal of Mine Automation, 1999, 25(1): 4-6.

Catalog

    Article Metrics

    Article views (73) PDF downloads (9) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return