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Simulating the impacts of ionospheric scintillation on L band SAR image formation

机译:模拟电离层闪烁对L波段SAR成像的影响

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摘要

We develop a phase screen model called the Synthetic Aperture Radar (SAR) Scintillation Simulator (SAR-SS) for predicting the impacts of ionospheric scintillation on SAR image formation. SAR-SS consists of a phase screen generator and a propagator. The screen generator creates a 2-D random realization of spatial phase fluctuations resulting from the traversal of small-scale field-aligned irregularities in the ionosphere. It accounts for the motion of the radar platform, the drift of the ionospheric irregularities, and the oblique angle of propagation, all of which determine the scale sizes of the irregularities sampled by the radar beam. The propagator solves the 3-D parabolic wave equation using the split step technique to compute the ionospheric transfer function for two-way propagation. This ionospheric transfer function is used to modulate the SAR signal due to terrestrial features in order to assess the ionospheric impact on SAR image formation in the small target approximation. We compare simulated and observed PALSAR imagery over Brazil during disturbed ionospheric conditions. We demonstrate that SAR-SS can reproduce the field-aligned streaks in PALSAR imagery caused by irregularities in the equatorial ionosphere that have been observed by previous authors. The field-aligned streaks exhibited a dominant wavelength larger than the Fresnel break scale, which suggests that refractive scatter was dominant over diffraction as the physical mechanism responsible for the scintillation of the radar signal in this case. The spectral index of phase fluctuations in the screen was quite large (9.0), suggesting that these irregularities were possibly associated with bottomside sinudoidal irregularities rather than equatorial plasma bubbles.
机译:我们开发了一种称为“合成孔径雷达(SAR)闪烁模拟器(SAR-SS)”的相位屏蔽模型,用于预测电离层闪烁对SAR图像形成的影响。 SAR-SS由一个相位屏蔽发生器和一个传播器组成。屏幕生成器创建二维随机实现的空间相位波动,该波动是由于电离层中小规模场对准不规则的遍历而导致的。它考虑了雷达平台的运动,电离层不规则性的漂移以及传播的倾斜角,所有这些因素决定了雷达波束采样的不规则性的尺度大小。传播器使用分步技术求解3-D抛物线方程,以计算双向传播的电离层传递函数。该电离层传递函数用于调制由于地面特征引起的SAR信号,以便在小目标近似情况下评估电离层对SAR图像形成的影响。我们比较了电离层扰动条件下巴西的模拟和观察到的PALSAR影像。我们证明了SAR-SS可以重现先前作者已经观察到的由赤道电离层不规则引起的PALSAR图像中的场对准条纹。场对准的条纹显示出的主波长大于菲涅耳断裂标度,这表明折射散射比衍射支配,因为在这种情况下,这是造成雷达信号闪烁的物理机制。屏幕中相位波动的频谱指数非常大(9.0),表明这些不规则现象可能与底侧正弦曲线不规则现象有关,而不是与赤道等离子体气泡有关。

著录项

  • 来源
    《Radio Science》 |2012年第4期|p.RS0L20.1-RS0L20.14|共14页
  • 作者单位

    Institute for Scientific Research,Boston College, Boston, MA 02467-3862, USA;

    Space Vehicles Directorate, Air Force Research Laboratory, Hanscom Air Force Base, Massachusetts, USA,Now at Institute for Scientific Research, Boston College, Boston,Massachusetts, USA;

    Space Vehicles Directorate, Air Force Research Laboratory, Kirtland Air Force Base, New Mexico, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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