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Uncertainty Propagation in a Non-linear Regression Analysis: Application to a Ballistic Absolute Gravimeter (IMGC-02)

机译:非线性回归分析中的不确定性繁殖:应用于弹道绝对重力计(IMGC-02)

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Today's most accurate measurements of the gravitational acceleration are based on interferometric reconstruction of the vertical trajectory followed by a test body launched in a vacuum chamber. The gravity value g is one of the parameters of a model function derived from the law of motion of the body, and is estimated by a least squares adjustment. In this paper we present the regression analysis applied to the IMGC-02 absolute gravimeter and the associated uncertainty propagation. We also show how a suitable choice of the reference height z, at which g is calculated, can yield a minimum-variance estimate. This choice is based on the covariance matrix of the parameter estimates provided by the adjustment algorithm.
机译:今天的最精确测量引力加速度基于垂直轨迹的干涉式重建,然后是在真空室中发射的测试体。重力值G是源自主体的运动规律的模型函数的参数之一,并且由最小二乘调整估计。在本文中,我们介绍了应用于IMGC-02绝对重力的回归分析和相关的不确定性传播。我们还展示了如何计算的参考高度z的合适选择,可以产生最小 - 方差估计。该选择基于调整算法提供的参数估计的协方差矩阵。

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