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POGO satellite orbit corrections: an opportunity to improve the quality of the geomagnetic field measurements?

机译:pOGO卫星轨道校正:提高地磁场测量质量的机会?

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摘要

We present an attempt to improve the quality of the geomagnetic field measurements from the Polar Orbiting Geophysical Observatory (POGO) satellite missions in the late 1960s. Inaccurate satellite positions are believed to be a major source of errors for using the magnetic observations for field modelling. To improve the data, we use aniterative approach consisting of two main parts: one is a main field modelling process to obtain the radial fieldgradient to perturb the orbits and the other is the state-of-the-art GPS orbit modelling software BERNESE to calculatenew physical orbits. We report results based on a single-day approach showing a clear increase of the data quality. That single-day approach leads, however, to undesirable orbital jumps at midnight. Furthermore, we report results obtained for a much larger data set comprising almost all of the data from the three missions. With this approach, weeliminate the orbit discontinuities at midnight but only tiny quality improvements could be achieved forgeomagnetically quiet data. We believe that improvements to the data are probably still possible, but it would require the original tracking observations to be found.
机译:我们提出一种尝试,以提高1960年代后期极地轨道地球物理天文台(POGO)卫星任务的地磁场测量质量。人们认为,不准确的卫星位置是使用磁观测进行场建模的主要误差来源。为了改善数据,我们使用了反演方法,该方法包括两个主要部分:一个是用于获取径向场梯度以扰动轨道的主场建模过程,另一个是使用最新的GPS轨道建模软件BERNESE来计算新的物理轨道。我们基于单日报告方法报告结果,表明数据质量明显提高。但是,这种单日进近的方法导致午夜发生不希望的轨道跳跃。此外,我们报告了从一个更大的数据集获得的结果,该数据集包含了三个任务的几乎所有数据。使用这种方法,可以消除午夜时分的轨道不连续性,但是对于地磁静默数据只能实现很小的质量改进。我们认为,可能仍可以对数据进行改进,但这将需要找到原始的跟踪观察结果。

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