孟庆勇. 矿用救援通信系统多终端蓝牙同频干扰方法[J]. 煤矿安全, 2020, 51(8): 112-116.
    引用本文: 孟庆勇. 矿用救援通信系统多终端蓝牙同频干扰方法[J]. 煤矿安全, 2020, 51(8): 112-116.
    MENG Qingyong. Study on Multi-terminal Bluetooth Simultaneous Frequency Interference in Mine Rescue Communication System[J]. Safety in Coal Mines, 2020, 51(8): 112-116.
    Citation: MENG Qingyong. Study on Multi-terminal Bluetooth Simultaneous Frequency Interference in Mine Rescue Communication System[J]. Safety in Coal Mines, 2020, 51(8): 112-116.

    矿用救援通信系统多终端蓝牙同频干扰方法

    Study on Multi-terminal Bluetooth Simultaneous Frequency Interference in Mine Rescue Communication System

    • 摘要: 针对基于蓝牙传输的矿井应急救援无线通信中出现的同频干扰问题,提出了利用跳频技术实现抗干扰的方法。矿用体征参数传感器与矿用数据采集终端通过蓝牙连接,当频道状态为占用时,数据采集终端控制体征参数传感器采用跳频方式更改频道,数据采集终端将根据蓝牙频道状态表按顺序递增搜索未占用的频道,在数据采集终端更改频道后将该频道状态改为占用,并在煤矿井下进行测试实验。测试结果表明:该方法能够有效地将多终端分配到不同的频道,避免同频传输所产生的干扰情况,可有效地提升井下应急通信系统的稳定性和救援能力。

       

      Abstract: In view of problems of co-channel interference emerged in wireless communication in coal mine emergency rescue based on Bluetooth transmission, the paper proposes a method of realizing anti-interference using frequency hopping technology. Mine-used vital sign parameter sensors connect with mine-used data acquisition terminals via Bluetooth signals. When the state of the channel is occupied, a vital sign parameter sensor changes the channels through the way of frequency hopping technology controlled by a data acquisition terminal, which searches in progressive increase for unoccupied channels in order according to the table of Bluetooth channel states and transforms the state of these changed channels into the occupied state. The underground test results indicate that this method can distribute terminals to different channels effectively and avoid the situation of co-channel interference at the same time, which enhances the stability of underground emergency communication system and the capability of emergency rescue.

       

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