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New Calibration Method of Accelerometers in GRACE Satellites Based on Precise Solar Radiation Model

机译:基于精确的太阳辐射模型的Grace卫星加速度计的新校准方法

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AbstractAdopting the precise radiation pressure model, we compute the real perturbation force caused by the solar radiation on the GRACE satellites and estimate the scale factors of accelerometer'syaxis andzaxis. Setting these scale factors constant and using the dynamical orbit determination (OD), we estimate the rest four calibration parameters, i.e. the scale factor of thexaxis and the biases of three axes. On this basis, we obtain the daily calibration parameters from 2002 to 2014. The average values and standard deviations of scale factors of thex,yandzaxes are 0.9435 ± 0.0187, 0.9393 ± 0.0444, 1.0371 ± 0.0391 for GRACE-A, and 0.9313 ± 0.0170, 0.9488 ± 0.0452, 1.0274 ± 0.0446 for GRACE-B, respectively. Compared with our previous work, this new method constrains the scale factors of theyandzaxes with the precise radiation pressure model, which can reduce the influence of data errors on the weak-signal axes (y,z), as well as reduce the correlation between scale factors and biases, and eventually improve the stability of calibration parameters. Taking theyandzaxes of GRACE-A as an example, the standard deviations of scale factors with this new method are about 0.0391–0.0444, while the previous results obtained by the unconstrained dynamical orbit determination were about 0.21–0.31. It is shown that the standard deviations of scale factors in this paper have been reduced by more than 78%, and those of bi
机译:<![cdata [ 抽象 采用精确的辐射压力模型,我们计算由宽度卫星的太阳辐射造成的真正扰动力并估计加速度计的尺度因子< CE:斜体> y 轴和 z 轴。设置这些比例因子常数并使用动态轨道确定(OD),我们估计其余四个校准参数,即 x 轴和三个轴的偏差的比例因子。在此基础上,我们从2002年到2014年获得日常校准参数。 x y z 轴为0.9435±0.0187,0.9393±0.0444,10.371±0.0391,为宽限为0.9313±0.0170,0.9488±0.0452,10274±0.0446,为Grace-B分别为1.0274±0.0446 。与我们以前的工作相比,这种新方法限制了 y z 轴的尺度因子,可以是精确的辐射压力模型减少数据误差对弱信号轴上的影响( y z ),以及减少比例因子之间的相关性偏见,最终提高校准参数的稳定性。服用 y z race-a的轴作为一个例子,尺度因子与这种新方法的标准偏差约为0.0391- 0.0444,而通过无约束的动态轨道测定获得的先前结果为约0.21-0.31。结果表明,本文中规模因素的标准偏差已减少超过78%,以及毕业

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