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CHENG Yulong. A Proximity Sensor for Locating Mine Cars with Narrow Gauge[J]. Safety in Coal Mines, 2020, 51(5): 142-145.
Citation: CHENG Yulong. A Proximity Sensor for Locating Mine Cars with Narrow Gauge[J]. Safety in Coal Mines, 2020, 51(5): 142-145.

A Proximity Sensor for Locating Mine Cars with Narrow Gauge

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  • Published Date: May 19, 2020
  • In the construction of mine-used narrow-rail vehicle transportation monitoring system, proximity sensors are required to locate the wheels to detect the exact location of the mine car. Proximity sensors require some stability and detection accuracy. In view of this demand, a mineral proximity sensor is developed, the key components of the proximity sensor are analyzed and studied, the solution is determined and the actual test is carried out. An important component of the proximity sensor is the oscillating coil. The magnetic-core shape and coil material have a great influence on the oscillating coil, and the combination of several different shapes and wires is tested and studied, sensors were made and field applications were carried out.
  • [1]
    郑连泽,王伟钢.全金属电感式接近传感器的关键技术及应用[J].海军航空工程学院学报,2010,25(6):707-710.
    [2]
    樊树江,李璐,吴峻,等.新型电涡流传感器的动态响应分析[J].传感器技术,2004(3):21-24.
    [3]
    杨光,李金国,苏兴荣.提高电涡流传感器可靠性试验和分析方法研究[J].电子测量与仪器学报,2007,21(2):35-39.
    [4]
    王军平,王安,樊文侠.电涡流传感器线圈参数对传感器性能的影响[J].自动化仪表,2001(12):24-26.
    [5]
    于亚婷,杜平安,廖雅琴.线圈形状及几何参数对电涡流传感器性能的影响[J].仪器仪表学报,2007(6):1045.
    [6]
    曹青松,周继惠.基于电涡流的金属种类识别技术的理论与实验研究[J].仪器仪表学报,2007(9):1718.
    [7]
    李维波,马伟明,胡安,等.涡流接近开关结构和电磁参数的影响[J].电工技术学报,2008(5):29-36.
    [8]
    王鹏,丁天怀,傅志斌.平面电涡流线圈的结构参数设计[J].清华大学学报(自然科学版),2007(11):1959.
    [9]
    杜保强,叶会英.电涡流传感器温漂的综合补偿[J].半导体技术,2004(10):50-52.
    [10]
    徐国维.国外电磁线产品发展动向和对我国电磁线行业技术进步的建议[J].电线电缆,2004(6):3-9.
    [11]
    夏虹,曹欣荣,董惠,等.电涡流传感器用于铁路机车速度与路程的测量[J].哈尔滨工程大学学报,2002(2):30-32.
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