Error Compensation of Yaw and Pitch Deformation on Roll Angle Measurement

Wenchang Yang, Zhiqian Wang, Jian-rong Li, Chengwu Shen, Shaojin Liu
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Abstract

Aiming at the double grating torsion deformation measurement scheme, we study the influence of yaw and pitch angle changes on the roll angle measurement, and propose a corresponding error compensation method. First, the math-ematical model is established by analyzing the relationship between the yaw, pitch deformation and the geometric projection of the grating. The model shows that measurement error is also affected by the magnitude of the roll angle itself. In the experiment, the high precision multi-tooth indexing table is used to simulate the yaw deformation, and the collected data is used for polynomial fitting analysis. Finally, the accuracy of roll angle measurement can be guaranteed within 3.5" after 3-order polynomial compensation.
横摇角测量中偏航和俯仰变形的误差补偿
针对双光栅扭转变形测量方案,研究了偏航角和俯仰角变化对滚转角测量的影响,并提出了相应的误差补偿方法。首先,通过分析光栅的偏航、俯仰变形与几何投影之间的关系,建立了光栅的数学模型。该模型表明,横摇角本身的大小对测量误差也有影响。实验中采用高精度多齿分度表模拟横摆变形,采集数据进行多项式拟合分析。最后,经三阶多项式补偿后,滚转角测量精度可保证在3.5”以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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