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Dynamic Precise Positioning Method of Shearer Based on Closing Path Optimal Estimation Model

机译:基于关闭路径最优估计模型的采煤机动态精确定位方法

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摘要

Longwall shearer positioning with an inertial navigation system (INS) aided by an odometer is the key technology for automation of the longwall coal mining process. In order to improve the shearer positioning accuracy without using external sensors, the closing path motion characteristics of a shearer working in a longwall mining face was summarized by analyzing the longwall mining method. A closing path optimal estimation model was proposed based on the motion characteristics of the shearer and a Kalman filter (KF). Through simulation tests, it was verified that the model reduced the influence of heading angle drift of an INS on the shearer positioning accuracy without using external sensors. The shearer positioning accuracy based on the circular error probable was improved by approximately an order of one under the effect of the optimal estimation model. This was beneficial for reducing the large positioning error of the shearer in a longwall mining face during each cutting cycle for approximately 1 h.
机译:Longwall Shearer定位与惯性导航系统(INS)辅助Royomers,是长墙煤矿过程自动化的关键技术。为了在不使用外部传感器的情况下提高剪切者定位精度,通过分析长壁采矿方法总结了在长壁采矿面上工作的采煤机的闭合路径运动特性。基于剪切仪和卡尔曼滤波器(KF)的运动特性提出了闭合路径最佳估计模型。通过仿真测试,验证了模型在不使用外部传感器的情况下降低了在剪切者定位精度上的标题角漂移的影响。通过在最佳估计模型的效果下,通过大约一个顺序提高了基于圆形误差的采煤机定位精度。这有利于在每个切割循环期间减少在长壁挖掘面上的剪切刀的大定位误差约为1小时。

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