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Self-calibrated boundary detection algorithm for horizon control in long-wall mining

机译:自校正边界检测算法在长壁开采中的水平控制

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A novel sensor was previously developed for detecting rock boundaries behind uncut coal for controlling the horizon of the cutting head in long-wall mining environments. This boundary detection method is based on extracting the thickness of the uncut layer from the complex reflection coefficient of a narrowband antenna that is mounted directly on the rotating cutting drum. The main practical challenges of this detection method lie in the ability to (1) mitigate the much stronger reflection from the air-mine interface and (2) obtain the in situ dielectric constant and conductivity of the cut material in active mining environments. This paper presents a novel in situ calibration method and real-time uncut thickness estimation procedure which could be practically implemented into normal long-wall mining operations, and thus allowing real-time monitoring of distance to rock boundaries behind the uncut seam. This paper will also discuss the uncertainty of the resultant estimated thickness in relation to the variation of cutting drum positions, dielectric constant, and air gap.
机译:以前已经开发了一种新颖的传感器,用于检测未开采的煤炭后面的岩石边界,以在长壁开采环境中控制切割头的水平。该边界检测方法基于从直接安装在旋转切割鼓上的窄带天线的复反射系数中提取未切割层的厚度。这种探测方法的主要实际挑战在于(1)减轻来自矿井界面的强烈反射的能力,以及(2)在活跃的采矿环境中获得切割材料的原位介电常数和电导率的能力。本文提出了一种新颖的原位校准方法和实时未切割厚度估算程序,该方法可以在常规的长壁开采作业中实际应用,从而可以实时监测到未切割煤层后面的岩石边界的距离。本文还将讨论与切割滚筒位置,介电常数和气隙的变化有关的最终估计厚度的不确定性。

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