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A Novel RFID-Based Sensing Method for Low-Cost Bolt Loosening Monitoring

机译:一种基于RFID基于RFID的低成本螺栓松开监测的传感方法

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In coal mines, bolt loosening in the cage guide is affected by the harsh environmental factors and cage hoist vibration, leading to significant threats to work safety. It is crucial, to this effect, to successfully detect the status of multipoint bolts of guide structures. This paper proposes a system to monitor bolt status in harsh environments established based on the RFID technique. A proof-of-concept model was demonstrated consisting of a bolt gearing system, passive UHF RFID tags, a reader, and monitoring software. A tinfoil metal film is fixed on the retaining plate and an RFID tag bonded to a large gear, with the bolt to be detected fixed in the center of a smaller gear. The radio-frequency signal cannot be received by the reader if the tag is completely obscured by the tinfoil, and if the bolt is loose, the tag's antenna is exposed when the gear revolves. A radio-frequency signal that carries corresponding bolt's information is transmitted by the RFID tag to the RFID reader due to coil coupling, identifying loose bolt location and reporting them in the software. Confirmatory test results revealed that the system indeed successfully detects bolt loosening and comparative test results (based on a reed switch multipoint bolt loosening monitor system) provided valuable information regarding the strengths and weaknesses of the proposed system.
机译:在煤矿中,笼子指南中松动的螺栓受到严厉环境因素和笼葫芦振动的影响,导致工作安全的重大威胁。至此效果至关重要,以成功检测导向结构的多点螺栓的状态。本文提出了一种在基于RFID技术建立的恶劣环境中监控螺栓状态的系统。概念验证模型是由螺栓传动系统,被动UHF RFID标签,读取器和监控软件组成的验证模型。锡箔金属膜固定在保持板上,并且粘合到大齿轮的RFID标签,螺栓被检测在较小齿轮的中心。如果标签完全被锡箔完全遮挡,并且如果螺栓松动,则读取器不能接收射频信号,当齿轮旋转时,标签的天线暴露。由于线圈耦合,RFID标签将RFID标签传输到RFID读取器的射频信号,该射频信号由线圈耦合,识别松动的螺栓位置并将其报告在软件中。确认的测试结果表明,该系统确实成功地检测螺栓松动和比较试验结果(基于簧片开关多点螺栓松开监测系统)提供了有关所提出的系统的优点和缺点的有价值的信息。

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