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Underground Electromagnetic Measure and Filter Based on Time-frequency Analysis Applied in Coal Mine Monitoring System

机译:基于时频分析的地下电磁测量与滤波在煤矿监控系统中的应用

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Because all equipments run in the underground explosive atmosphere, the underground electromagnetic measurement could not be accomplished perfectly. A novel electromagnetic soft-sensing method was proposed to measure the electromagnetic distribution indirectly. The wavelet time-frequency analysis was introduced to monitoring system and the electromagnetic interference(EMI) sources could be ascertained. The startup time, duration and waveform could be detected based on the running records of underground electric equipments. It is seen that it is convenient to perform the EMI measurements while the total cost can be reduced greatly. Moreover, the electrical surge, the most outstanding interference, was studied to verify the validity of wavelet analysis. EMI filter was improved in accordance of the EMI gotten from wavelet analysis. Power port immunity was developed obviously. Therefore the surge of data port was restrained markedly with wavelet filtration and the protection circuit. Coordinative effect of EMI power and wavelet filter resulted in reduction of sensor false alarms. Results indicate that wavelet analysis and the improved EMI filter have enhanced the electromagnetic compatibility(EMC) of monitoring substations and sensors obviously. It is concluded the wavelet analysis is of guiding significance to measure underground EMI distribution and improve EMC of the underground monitoring system.
机译:由于所有设备都在地下爆炸性环境中运行,因此无法完美完成地下电磁测量。提出了一种新的电磁软测量方法,用于间接测量电磁分布。将小波时频分析方法引入监测系统,可以确定电磁干扰源。根据地下电气设备的运行记录,可以检测出启动时间,持续时间和波形。可以看出,进行EMI测量很方便,同时可以大大降低总成本。此外,对电涌这一最突出的干扰进行了研究,以验证小波分析的有效性。根据小波分析得到的EMI,对EMI滤波器进行了改进。电源端口抗扰度明显提高。因此,小波滤波和保护电路可以明显抑制数据端口的浪涌。 EMI功率和小波滤波器的协同作用可减少传感器误报。结果表明,小波分析和改进的EMI滤波器明显增强了监控变电站和传感器的电磁兼容性(EMC)。结论表明,小波分析对测量地下电磁干扰分布和改善地下监测系统的电磁兼容具有指导意义。

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