煤矿安全监测仪器抗干扰技术及性能提升

Anti-interference Technology and Performance Improvement of Safety Monitoring Instruments in Coal Mines

  • 摘要: 针对温家庄矿安全监测系统在强电磁干扰环境下存在的数据跳变、信号丢失和误报警等问题,该研究从供电系统隔离、信号传输链路、干扰源抑制、传感器选型及中心站软件算法五方面开展抗干扰技术优化设计。通过更换稳压电源与备用锂电池缓冲系统、改造接地与通信链路结构、在变频源端加装EMI滤波器、更新NDIR型传感器并强化其电磁兼容性能,以及在中心站嵌入卡尔曼滤波与MAD剔除算法,有效提升系统稳定性与监测数据准确性。实施后,数据跳变率下降90%以上,UWB定位误差能够控制在0.5 m以内,增强矿井安全监测系统的可靠性和实用性。

     

    Abstract: Aiming at the existing problems of data jumping, signal loss, false alarms and others in the safety monitoring system of Wenjiazhuang Mine under the strong electromagnetic interference environment, the study carries out anti-interference technology optimization design from five aspects such as power supply system isolation, signal transmission link, interference source suppression, sensor type selection, and central station software algorithm. By replacing the regulated power supply and backup lithium battery buffer system, transforming the grounding and communication link structures, installing EMI filters at the variable frequency source end, updating NDIR type sensors and strengthening their electromagnetic compatibility performance, and embedding Kalman filtering and MAD removal algorithm at the central station, the system stability and monitoring data accuracy are effectively improved. After implementation, the data jump rate is decreased by over 90%, and the UWB positioning error can be controlled within 0.5 m, which enhances the reliability and practicality of the safety monitoring system in mines.

     

/

返回文章
返回