首页> 外文期刊>Mapan: Journal of Metrology Society of India >Error Analysis and Comparison of the Fiber Optic Gyroscope Scale Factor Obtained by Angular Velocity Method and Angular Increment Method
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Error Analysis and Comparison of the Fiber Optic Gyroscope Scale Factor Obtained by Angular Velocity Method and Angular Increment Method

机译:误差分析与角速度法和角度增量方法获得的光纤陀螺刻度因子的比较

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摘要

The fiber optic gyroscope (FOG) has a broad application prospect in the field of dynamic angle measurement. The scale factor, which is an important indicator of the FOG, directly determines the angle measurement precision. In this paper, the principles of angular velocity method and angular increment method, which have been commonly used in obtaining the scale factor, are introduced, and the error sources that affect the scale factor in both methods are analyzed in detail. The theoretical analysis results show that the main error sources of the scale factor are the relative error of the angular velocity benchmark generated by the rotary table and the value of the selected angular velocity benchmark in the angular velocity method. Other error sources need to be considered only at small angular velocity benchmark. Instead, the main error of the scale factor comes from the position precision of the rotary table in the angular increment method. Finally, the experiments on the scale factors of the FOG in both methods are carried out, and they are applied to the angle measurement experiments, respectively. The angle measurement results show that the deviation of the angle can be limited in 0.002 degrees when the scale factor obtained by the angular increment method is adopted in angle measurement. It is an order of magnitude smaller than the angular velocity method. We can get the conclusion that the scale factor obtained by the angular increment method is more suitable for angle measurement than the angular velocity method.
机译:光纤陀螺(FOG)在动态角度测量领域具有广泛的应用前景。比例因子是雾的重要指标,直接确定角度测量精度。本文介绍了介绍角速度法和角度增量方法的原理,该方法已经普遍用于获得比例因子,以及影响两种方法中的比例因子的误差源。理论分析结果表明,比例因子的主要误差源是由旋转台产生的角速度基准的相对误差和角速度方法中所选择的角速度基准的值。需要仅在小角速度基准测试中考虑其他错误源。相反,比例因子的主要误差来自角增量方法的旋转台的位置精度。最后,进行了两种方法中雾的比例因子的实验,分别施加到角度测量实验。角度测量结果表明,当通过角度测量采用角度增量方法获得的比例因子时,角度的偏差可以限制为0.002度。它是比角速度法小的数量级。我们可以得出结论:通过角度增量方法获得的比例因子更适合于角度测量而不是角速度法。

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