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Method to suppress the temperature dependency of scale factor in measurement-while-drilling surveying utilizing fiber optic gyroscope

机译:利用光纤陀螺仪抑制随钻测量中比例因子与温度的关系的方法

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We analyze the north finding error caused by temperature dependency of scale factor theoretically in measurement-while-drilling surveying utilizing single-axis fiber optic gyroscope (FOG). Theoretical analysis indicates that the error will increase as the inclination angle increases, and it reaches the maximum when the sensitive axis of FOG points to the east or the west. To suppress the temperature dependency, we first employ a polynomial model to compensate the system error of scale factor. And then we give a formula to estimate the optimal calibration value of scale factor, which can reduce the north finding error caused by the random error of scale factor. Experiments with a specific single-axis FOG demonstrate that, with our method, the north finding error can be reduced from 3.966deg to 1.050deg.
机译:我们在理论上利用单轴光纤陀螺仪(FOG)随钻测量中分析了因比例系数的温度依赖性而引起的寻北误差。理论分析表明,该误差随倾角的增加而增大,当FOG的敏感轴指向东或西时,误差达到最大值。为了抑制温度依赖性,我们首先采用多项式模型来补偿比例因子的系统误差。然后给出一个公式来估计比例因子的最佳校准值,可以减少由比例因子的随机误差引起的寻北误差。使用特定单轴FOG进行的实验表明,使用我们的方法,寻北误差可以从3.966deg减小到1.050deg。

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