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Study on Multi-sensor Information Fusion Technology in the Dynamic Monitoring of Coal Mine Roof

机译:煤矿顶板动态监测中的多传感器信息融合技术研究

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China is the world's largest coal producer and consumer countries. With the continuous progress of the modernization drive, the demand for coal is more and more, but coal mine safety situation is still grim. All of various types of coal mine accidents in production, the roof accident continued to hold the forefront. As we known, coal production is a dynamic process, a variety of parameters and variables are subject to change, yet all variables are not isolated, they are interconnected. These factors are from a different side to reflect a change or movement of the roof, so they are multi-information fusion integration. In this study, we take Xing-Cun village coal mine, which locate on Shandong province, for an example. In E3207 working face, underground 1000 meters, five kinds of sensors are installed. They are micro seismic sensors, fully mechanized working face powered support sensor, roof-to-floor convergence, two sides convergence of roadway, and borehole stress sensor The ground control central can collected above five kinds of data in real-time. Using data fusion method, we setup up the model of fuzzy logic. Through data analysis, the five membership function are given, finally we get the fusion curve. By the curve we can identify the roof movement consistent with the law production practices, analysis the overlying rock strata, with good guidance to production. Facts have proved that the information can be fused to fully reflect the comprehensive and complementary data, improve the accuracy of the warning of roof movement, has positive significance to ensure safety in production.
机译:中国是世界上最大的煤炭生产国和消费国。随着现代化建设的不断推进,对煤炭的需求越来越大,但煤矿安全形势依然严峻。各种类型的煤矿事故在生产中,顶板事故继续占据前列。众所周知,煤炭生产是一个动态过程,各种参数和变量可能会发生变化,但并非所有变量都是孤立的,而是相互关联的。这些因素是从不同的角度反映屋顶的变化或运动,因此它们是多信息融合融合的。本研究以山东省兴村村煤矿为例。在地下1000米的E3207工作面中,安装了五种传感器。它们是微地震传感器,全机械化工作面动力支撑传感器,巷道到楼顶收敛,巷道两侧收敛以及井眼应力传感器。地面控制中心可以实时收集以上五种数据。使用数据融合方法,建立了模糊逻辑模型。通过数据分析,给出了五个隶属度函数,最后得到了融合曲线。通过曲线我们可以识别出符合法律生产惯例的顶板运动,分析上覆的岩层,为生产提供良好的指导。事实证明,这些信息可以融合在一起,以充分反映全面,互补的数据,提高顶板运动预警的准确性,对确保生产安全具有积极意义。

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