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Compensating Earth Ionosphere Phase Distortion in Spaceborne VHF Radar Sounders for Subsurface Investigations

机译:补偿星载VHF雷达测深仪中的地球电离层相位畸变,用于地下调查

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摘要

Spaceborne low-frequency and wide bandwidth radar sounders are a promising technology to regularly investigate at global-scale Earth's icy and arid regions. However, Earth ionosphere distorts the radar signal impacting performance parameters, such as subsurface resolution, of the radar system. One of the most relevant distortions that a sounder signal in the lower part of the very high-frequency (VHF) band (e.g., 40-50 MHz) encounters is the distortion of the phase component that could become mission critical if not properly compensated. Low-frequency and high fractional bandwidth radar systems are particularly affected by this issue. Previous works on radar sounder ionosphere phase distortion compensation addressed the Martian ionosphere and used techniques based on the Taylor series expansion. In this letter, we focus on the Earth ionosphere and we exploit a recently proposed ionosphere compensation technique based on the Legendre orthogonal polynomials expansion, which proved to be more accurate than the compensation based on Taylor expansion. Simulations show that the method allows a nominal compensation of the phase distortions under realistic ionosphere scenarios expected during the acquisitions. Furthermore, it proved to be accurate and robust for total electron content conditions expected during nighttime for all the geomagnetic latitudes. The results confirm that the method can accurately compensate the distorting effects on the phase component of a spaceborne VHF radar sounder.
机译:星载低频和宽带雷达测深仪是一种有前途的技术,可以在全球范围的地球冰冷和干旱地区进行定期调查。但是,地球电离层会使雷达信号失真,从而影响雷达系统的性能参数,例如地下分辨率。甚高频(VHF)频段较低部分(例如40-50 MHz)中的发声信号遇到的最相关的失真之一是相位分量的失真,如果得不到适当的补偿,可能会成为关键任务。低频和高分数带宽雷达系统尤其受此问题影响。先前在雷达测深仪电离层相位畸变补偿方面的工作解决了火星电离层问题,并使用了基于泰勒级数展开的技术。在这封信中,我们专注于地球电离层,并利用了最近提出的基于勒让德正交多项式展开的电离层补偿技术,事实证明,该技术比基于泰勒展开的补偿更为精确。仿真表明,该方法允许在实际电离层情况下在采集过程中对相位失真进行名义上的补偿。此外,对于所有地磁纬度,在夜间预期的总电子含量条件下,它被证明是准确且可靠的。结果表明,该方法可以准确补偿星载甚高频雷达测深仪对相位分量的失真影响。

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  • 来源
    《IEEE Geoscience and Remote Sensing Letters》 |2018年第11期|1672-1676|共5页
  • 作者单位

    Department of Information Engineering and Computer Science, University of Trento, Trento, Italy;

    Department of Information Engineering and Computer Science, University of Trento, Trento, Italy;

    Center of Information and Communication Technologies, Fondazione Bruno Kessler, Trento, Italy;

    Department of Information Engineering and Computer Science, University of Trento, Trento, Italy;

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

    Ionosphere; Spaceborne radar; Earth; Chirp; Phase distortion;

    机译:电离层;星载雷达;地球;Chi;相位畸变;

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