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DAI Jianbo. Design of low power consumption precise positioning and voice intercom information miner’s lamp[J]. Safety in Coal Mines, 2021, 52(12): 142-146.
Citation: DAI Jianbo. Design of low power consumption precise positioning and voice intercom information miner’s lamp[J]. Safety in Coal Mines, 2021, 52(12): 142-146.

Design of low power consumption precise positioning and voice intercom information miner’s lamp

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  • Published Date: December 19, 2021
  • Aiming at the actual needs of intelligent mine construction and improving the life safety, the paper analyzes the disadvantages of traditional information miner’s lamp, such as high cost, high power consumption, WiFi radio frequency placed in the cap. A miner’s lamp of low power consumption and low cost is designed. Through the study of UWB positioning technology and the sleep mechanism of WiFi wireless communication technology, the service life of mine lamp is extended; to study the speech signal compression coding algorithm, the radio frequency and lamp cap are separated, and the single chip vocoder is adopted, which reduces the cost. Locating voice intercom information miner’s lamp not only realizes high-precision positioning function, but also can call for emergency help, group evacuation and broadcast information of reliable escape routes of various disasters under dangerous conditions, providing a safer and stronger guarantee for miners’ underground operations.
  • [1]
    DB14/T 2060—2020智能煤矿建设规范[S].
    [2]
    AQ 6210—2020 煤矿井下人员定位系统通用技术条件(征求意见稿)[S].
    [3]
    陈贤,金业勇,陈康,等.一种矿用人员便携设备的无线程序升级方法[J].煤矿安全,2021,52(3):170.

    CHEN Xian, JIN Yeyong, CHEN Kang. A wireless program upgrade method for mine personnel portable equipment[J]. Safety in Coal Mines, 2021, 52(3): 170.
    [4]
    常云泽.井下信息化矿灯通讯调度系统研究[J].能源与节能,2021(2):178-180.

    CHANG Yunze. Study on communication and dispatching system of underground informationalized miner’s lamp[J]. Energy and Energy Conservation, 2021(2): 178.
    [5]
    王涛,林红梅,边杰,等.一种煤矿用本安型信息矿灯设计与实现[J].能源科技,2021,18(10):37-39.

    WANG Tao, LIN Hongmei, BIAN Jie. Design and realization of an intrinsically safe information miner lamp for coal mines[J]. Energy Science and Technology, 2021, 18(10): 37-39.
    [6]
    刘朝阳,王安义.便携式通信矿灯的研究与设计[J].现代电子技术,2020,43(1):9-11.

    LIU Zhaoyang, WANG Anyi. Study and design of portable communication mine lamp[J]. Modern Electronics Technique, 2020, 43(1): 9-11.
    [7]
    肖开泰.基于UWB超宽带的煤矿定位系统设计[J].煤矿安全,2020,51(8):128-131.

    XIAO Kaitai. Design of coal mine positioning system based on UWB[J]. Safety in Coal Mines, 2020, 51(8): 128-131.
    [8]
    叶伟.煤矿井下目标定位的研究现状与展望[J].中国矿业,2021,30(1):82-89.

    YE Wei. Status and prospects of research on positioning of targets in underground coal mines[J]. China Mining Magazine, 2021, 30(1): 82-89.
    [9]
    宋兆雪,陈安明,赵青山.煤矿井下人员智能化平台研究[J].山东煤炭科技,2021(2):176-178.

    SONG Zhaoxue, CHEN Anming, ZHAO Qingshan. Research on intelligent platform for underground personnel in coal mine[J]. Shandong Coal Science and Technology, 2021(2): 176-178.
    [10]
    李文峰,白俊涛.基于Linux的矿用搜救机器人音视频系统[J].煤矿安全,2020,51(2):109-112.

    LI Wenfeng, BAI Juntao. Audio and video system for mine search and rescue robot based on Linux[J]. Safety in Coal Mines, 2020, 51(2): 109-112.
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