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How to process radio occultation data: 1. From time series of frequency residuals to vertical profiles of atmospheric and ionospheric properties

机译:如何处理无线电掩星数据:1.从频率残差的时间序列到大气和电离层特性的垂直剖面

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摘要

Expertise in processing radio occultation observations, which provide vertical profiles of atmospheric and ionospheric properties from measurements of the frequency of radio signals, is not widespread amongst the planetary science community. In order to increase the population of radio occultation processing experts, which will have positive consequences for this field, here we provide detailed instructions for one critical aspect of radio occultation data processing: how to obtain a series of bending angles as a function of the ray impact parameter from a time series of frequency residuals. As developed, this tool is valid only for one-way, single frequency occultations at spherically symmetric objects, and is thus not immediately applicable to either two-way occultations, such as those of Mars Express, or occultations at oblate objects, such as Jupiter or Saturn. This tool is demonstrated successfully on frequency residuals from a Mars Global Surveyor occultation at Mars, and the resultant set of bending angles and impact parameters are used to obtain vertical profiles of ionospheric electron density, neutral atmospheric number density, mass density, pressure, and temperature via the usual Abel transform. The root-mean-square difference between electron densities in the ionospheric profile derived herein and archived electron densities is 7 × 10~8 m~(-3). At the lowest altitudes, temperatures in the neutral atmospheric profile derived herein differ from archived neutral temperatures by less than 0.1 K. Software programs that implement these procedures accompany this paper and may be used to extract scientifically useful data products from lower-level data sets.
机译:在行星科学界中,处理无线电掩星观测的专业知识并不普遍,这些知识可通过测量无线电信号的频率来提供大气和电离层性质的垂直剖面。为了增加无线电掩星处理专家的数量,这将对该领域产生积极的影响,在此,我们为无线电掩星数据处理的一个关键方面提供详细说明:如何获取与射线有关的一系列弯曲角度来自频率残差的时间序列的影响参数。根据开发,此工具仅适用于球对称物体上的单向,单频掩星,因此不适用于火星快车之类的双向掩星或木星等扁形物体的掩星或土星。该工具已成功地在火星全球火星探测器掩盖的频率残差上得到了证明,并将所得的弯曲角和冲击参数集用于获得电离层电子密度,中性大气数密度,质量密度,压力和温度的垂直剖面通过通常的Abel变换。本文推导的电离层剖面中的电子密度与存档的电子密度之间的均方根差为7×10〜8 m〜(-3)。在最低海拔下,此处导出的中性大气廓线中的温度与存档的中性温度相差不到0.1K。实现这些过程的软件程序随附于本文中,可用于从较低级别的数据集中提取科学有用的数据产品。

著录项

  • 来源
    《Planetary and space science》 |2014年第10期|77-88|共12页
  • 作者单位

    Department of Astronomy, Boston University, 725 Commonwealth Avenue, Boston, MA 02215, USA,Center for Space Physics, Boston University, 725 Commonwealth Avenue, Boston, MA 02215, USA;

    Center for Space Physics, Boston University, 725 Commonwealth Avenue, Boston, MA 02215, USA;

    Department of Aeronautics and Astronautics, MIT, 77 Massachusetts Avenue, Cambridge, MA 02139, USA;

    Department of Aeronautics and Astronautics, MIT, 77 Massachusetts Avenue, Cambridge, MA 02139, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radio occultation; Ionosphere; Atmosphere; Data processing;

    机译:无线电掩星;电离层;大气层;数据处理;

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