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Observations of Phobos by the Mars Express radar MARSIS: Description of the detection techniques and preliminary results

机译:火星快车雷达MARSIS对火卫一的观测:探测技术和初步结果的说明

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摘要

The Mars Advanced Radar for Subsurface and Ionosphere Sounding (MARSIS) (Picardi et al., 2005) is a synthetic aperture low frequency radar altimeter, onboard the ESA Mars Express orbiter, launched in June 2003. It is the first and so far the only spaceborne radar that has observed the Martian moon Phobos. Radar echoes were collected on different flyby trajectories. The primary aim of sounding Phobos is to prove the feasibility of deep sounding, into its subsurface. MARSIS is optimized for deep penetration investigations and is capable of transmitting at four different bands between 1.3 MHz and 5.5 MHz with a 1 MHz bandwidth. Unfortunately the instrument was originally designed to operate exclusively on Mars, assuming that Phobos would not be observed. Following this assumption, a protection mechanism was implemented in the hardware (HW) to maintain a minimum time separation between transmission and reception phases of the radar. This limitation does not have any impact on Mars observation but it prevented the observation of Phobos. In order to successfully operate the instrument at Phobos, a particular configuration of the MARSIS onboard software (SW) parameters, called "Range Ambiguity," was implemented to override the HW protection zone, ensuring at the same time a high level of safety of the instrument. This paper describes the principles of MARSIS onboard processing, and the procedure through which the parameters of the processing software were tuned to observe targets below the minimum distance allowed by hardware. Some preliminary results of data analysis will be shown, with the support of radar echo simulations. A qualitative comparison between the simulated results and the actual data, does not support the detection of subsurface reflectors.
机译:用于地下和电离层探测的火星高级雷达(MARSIS)(Picardi等人,2005年)是ESA Mars Express轨道飞行器上的合成孔径低频雷达高度计,于2003年6月发射。这是迄今为止也是唯一的观测火星卫星火卫一的星载雷达。在不同的飞行轨迹上收集了雷达回波。探测Phobos的主要目的是证明在其地下进行深度探测的可行性。 MARSIS已针对深度渗透研究进行了优化,并能够在1 MHz带宽的1.3 MHz至5.5 MHz的四个不同频段上进行传输。不幸的是,该仪器最初设计为只能在火星上运行,前提是不会观测到火卫一。按照此假设,在硬件(HW)中实施了一种保护机制,以保持雷达发射和接收阶段之间的最小时间间隔。这个限制对火星的观测没有任何影响,但是却阻止了火卫一的观测。为了在Phobos上成功操作该仪器,实施了MARSIS板载软件(SW)参数的特殊配置,称为“ Range Ambiguity”(范围模糊),以覆盖HW保护区,同时确保了高水平的安全性。仪器。本文介绍了MARSIS机载处理的原理,以及调整处理软件参数以观察低于硬件允许的最小距离的目标的过程。在雷达回波模拟的支持下,将显示一些数据分析的初步结果。模拟结果与实际数据之间的定性比较不支持地下反射器的检测。

著录项

  • 来源
    《Advances in space research》 |2017年第10期|2289-2302|共14页
  • 作者单位

    Istituto di Astrofisica e Planetologia Spaziali (IAPS), Istituto Nazionale di Astrofisica (INAF), Rome, Italy;

    Info Solution, Milan, Italy;

    Jet Propulsion Laboratory, Pasadena, CA, USA;

    University of Dresden, Radio Frequency and Photonics, Dresden, Germany;

    Istituto di Astrofisica e Planetologia Spaziali (IAPS), Istituto Nazionale di Astrofisica (INAF), Rome, Italy;

    Istituto di Astrofisica e Planetologia Spaziali (IAPS), Istituto Nazionale di Astrofisica (INAF), Rome, Italy;

    Istituto di Radioastronomia, Istituto Nazionale di Astrofisica, Bologna, Italy;

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

    Phobos; Mars; Radar; Mars Express ESA mission; MARSIS; Ground penetrating radar;

    机译:火卫一;火星;雷达;火星快车ESA任务;火星探地雷达;
  • 入库时间 2022-08-17 13:19:11

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