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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >A simplified method for the extrinsic calibration of structured-light sensors using a single-ball target
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A simplified method for the extrinsic calibration of structured-light sensors using a single-ball target

机译:使用单球目标进行结构光传感器的外部校准的简化方法

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摘要

In this paper, a single-ball-target-based approach is presented for the extrinsic calibration of a multiple-axis, structured-light scanning system. Since the output of the structured-light sensor is 2D data, the system mathematical model is directly built as the transformation from 2D sensor coordinate system (laser plane) to Cartesian world coordinate system, not 3D non-orthogonal skewed coordinate system to Cartesian world coordinate system. By measuring a fixed point (ball center) using the sensor, "conjugate pairs" are identified for solving this model. An algorithm for determining the position of the CMM scanning axis where the laser plane passes through the ball center is proposed to enable this sensor to measure the fixed point. The calibration procedure facilitates on-line use. Experiments show that the calculation accuracy of the transformation matrix is adequate for common use.
机译:在本文中,提出了一种基于单球目标的方法,用于多轴结构光扫描系统的外部校准。由于结构化光传感器的输出是2D数据,因此系统数学模型直接建立为从2D传感器坐标系(激光平面)到笛卡尔世界坐标系的转换,而不是从3D非正交偏坐标系统到笛卡尔世界坐标的转换系统。通过使用传感器测量固定点(球心),可以识别“共轭对”以求解该模型。提出了一种用于确定激光平面穿过球心的CMM扫描轴位置的算法,以使该传感器能够测量固定点。校准程序便于在线使用。实验表明,该变换矩阵的计算精度足以满足通用要求。

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