杨波, 吴宁. 基于组合惯导的综采工作面刮板输送机直线度检测方法[J]. 煤矿安全, 2022, 53(6): 148-152.
    引用本文: 杨波, 吴宁. 基于组合惯导的综采工作面刮板输送机直线度检测方法[J]. 煤矿安全, 2022, 53(6): 148-152.
    YANG Bo, WU Ning. Straightness detection method of scraper conveyor in fully mechanized mining face based on integrated inertial navigation[J]. Safety in Coal Mines, 2022, 53(6): 148-152.
    Citation: YANG Bo, WU Ning. Straightness detection method of scraper conveyor in fully mechanized mining face based on integrated inertial navigation[J]. Safety in Coal Mines, 2022, 53(6): 148-152.

    基于组合惯导的综采工作面刮板输送机直线度检测方法

    Straightness detection method of scraper conveyor in fully mechanized mining face based on integrated inertial navigation

    • 摘要: 针对综采工作面刮板输送机直线度检测问题,提出了1种组合惯导的综采工作面刮板输送机直线度检测方法,该组合惯导系统由捷联惯导、里程计与激光雷达构成;系统采用卡尔曼滤波方法对惯导与里程计信息进行融合获得刮板输送机直线度,在每刀煤割开始前,利用激光雷达技术测量刮板输送机两端分别与综采工作面运输巷、回风巷标识板的位置关系来对捷联惯导与里程计融合系统进行初始位置校准,并运用激光雷达探测的刮板输送机直线度检测信息修正捷联惯导与里程计组合定位方法在长时间运行后位姿检测累积误差;通过对检测的采煤机位置信息进行拟合,获得刮板输送机的直线度。运用提出的刮板输送机直线度检测方法在黄陵矿业综采工作面进行了试验,结果表明:通过对捷联惯导、里程计与激光雷达信息融合,实现了激光雷达在工作面推进方向的检测误差小于0.05 m和150 m综采工作面的刮板输送机直线度检测误差小于7 cm,为综采工作面液压支架自动调直奠定了良好基础。

       

      Abstract: Aiming at the problem of straightness detection of scraper conveyor in fully mechanized mining face, the straightness detecting method of a scraper conveyor based on combined inertial navigation is proposed. The combined inertial navigation system consists of strap down inertial navigation, odometer and laser radar. The Kalman filtering algorithm is used to fuse the strap down inertial navigation and odometer information to obtain the straightness detection information of the scraper conveyor. Before the start of each coal cutting, the laser radar technology is used to measure the positional relationship between the two ends of the scraper conveyor and the identification board of the transportation lane and the return airway, in order to calibrate the initial position of strap down inertial navigation system. The straightness detection information of scraper conveyor by laser radar is used to compensate the accumulated error of the position and attitude of the combined positioning method for strap down inertial navigation and odometer after a long time operation. By fitting the detected position information of the shearer, the straightness of the scraper conveyor can be obtained. The straightness detection method of the scraper conveyor was tested in fully mechanized mining face of Huangling Mine. The experiment results indicate that through the information fusion of strap down inertial navigation, odometer and laser radar, the detection error of radar in the advancing direction of working face is less than 0.05 m and the straightness detection error of the scraper conveyor at a 150 m fully mechanized mining face is less than 7 cm. It lays a good foundation for the automatic straightening of hydraulic supports in fully mechanized mining face.

       

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