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A flexible calibration method for laser displacement sensors based on a stereo-target

机译:基于立体目标的激光位移传感器的灵活标定方法

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摘要

Laser displacement sensors (LDSs) are widely used in online measurement owing to their characteristics of non-contact, high measurement speed, etc. However, existing calibration methods for LDSs based on the traditional triangulation measurement model are time-consuming and tedious to operate. In this paper, a calibration method for LDSs based on a vision measurement model of the LDS is presented. According to the constraint relationships of the model parameters, the calibration is implemented by freely moving a stereo-target at least twice in the field of view of the LDS. Both simulation analyses and real experiments were conducted. Experimental results demonstrate that the calibration method achieves an accuracy of 0.044 mm within the measurement range of about 150mm. Compared to traditional calibration methods, the proposed method has no special limitation on the relative position of the LDS and the target. The linearity approximation of the measurement model in the calibration is not needed, and thus the measurement range is not limited in the linearity range. It is easy and quick to implement the calibration for the LDS. The method can be applied in wider fields.
机译:激光位移传感器(LDS)具有非接触,测量速度快等特点,因此广泛用于在线测量。但是,基于传统三角测量模型的LDS现有校准方法既费时又繁琐。本文提出了一种基于LDS视觉测量模型的LDS校准方法。根据模型参数的约束关系,通过在LDS的视场中至少两次自由移动立体声目标来实现校准。进行了仿真分析和实际实验。实验结果表明,该校准方法在约150mm的测量范围内可达到0.044 mm的精度。与传统的标定方法相比,该方法对LDS和目标的相对位置没有特殊的限制。校准中不需要测量模型的线性近似,因此测量范围不限于线性范围。对LDS进行校准非常容易和快捷。该方法可以应用于更广泛的领域。

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