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Instrumentation for Detecting Translation and Rotation of Mining Equipments during their Movements

机译:采矿设备运动期间检测其平移和旋转的仪器

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The present paper describes new sensory systems and algorithms for an underground mining machine to be located when it moves along an arbitrary path. Two sensory systems were devised using commercially available sensors which are highly reliable and hold stable performance : one consists of a gyroscopic angular velocity sensor and two servo-accelerometers, and the other replaces accelerometers by a couple of clinometers. The calculating method for locating the position of a mining machine comprises two consecutive procedures. The first part determines the attitude of the machine from the outputs from three sensors. The attitude is first derived from the generalized rotation matrix, then represented in terms of roll, pitch and yaw. The following part estimates the location of the machine step by step using its attitude and incremental distance.A laboratory experiment showed that the location of a mini-vehicle which was measured by means of new sensory systems coincided with its position which was located by a reckoning method using a couple of wire-displacement transducers. This implys that the new sensory systems and related algorithms should have potential use for instrumentation of underground mining equipments.
机译:本文描述了地下采矿机沿任意路径移动时要定位的新传感系统和算法。使用市售的传感器设计了两个传感系统,这些传感器具有高度的可靠性并保持稳定的性能:一个传感器由陀螺仪角速度传感器和两个伺服加速度计组成,另一个传感器由一对倾斜计代替。用于确定采矿机的位置的计算方法包括两个连续过程。第一部分通过三个传感器的输出确定机器的姿态。姿态首先从广义旋转矩阵得出,然后以侧倾,俯仰和偏航表示。下面的部分利用机器的姿态和增量距离逐步估计机器的位置。实验室实验表明,通过新的传感系统测量的微型车辆的位置与通过推算确定的位置相吻合。使用一对线位移传感器的方法。这意味着新的传感系统和相关算法应可潜在地用于地下采矿设备的仪器仪表。

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