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Mitigation of ionospheric phase delay error for SAR interferometry : an application of FR-based and azimuth offset methods

机译:SAR干涉法的电离层相位延迟误差的缓解:基于FR和方位角偏移方法的应用

摘要

Synthetic aperture radar (SAR) signals interact with the ionosphere layer when they propagate through the atmosphere, leading to the phase delay error for SAR interferometry (InSAR). Although several methods have been proposed to mitigate the ionospheric phase delay, the application of these methods has not been fully investigated. In this study, an application of two ionospheric mitigating methods, azimuth offset and Faraday Rotation (FR), is investigated and analysed through processing two Phased Array type L-band Synthetic Aperture Radar onboard the Advanced Land Observing Satellite-1 full-polarimetric SAR images over Alaska. The result indicates that both methods can effectively mitigate the ionospheric phase delay error for SAR interferometry, where the standard deviations of the ionosphere-corrected result have decreased to 3.2 cm for FR-based method and 2.0 cm for azimuth offset method compared to those before correction (7.3 cm). However, it is also found that the FR-based method is easily contaminated by the noise, which may be a limitation in practical applications. Moreover, analysis of the residual ionospheric phase from azimuth offset method suggests that the residual phase contribution in the azimuth offset and interferometric phase images is a limitation when using the azimuth offset to mitigate the ionospheric effect on SAR interferometry. This study may provide useful information when using these two methods to mitigate the ionospheric phase delay error on InSAR.
机译:合成孔径雷达(SAR)信号在大气中传播时会与电离层相互作用,从而导致SAR干涉测量(InSAR)出现相位延迟误差。尽管已经提出了几种减轻电离层相位延迟的方法,但是这些方法的应用尚未得到充分研究。在这项研究中,通过处理先进陆地观测卫星1全极化SAR图像上的两个相控阵型L波段合成孔径雷达,研究和分析了两种电离层减缓方法的应用,即方位角偏移和法拉第旋转(FR)。在阿拉斯加。结果表明,这两种方法都可以有效缓解SAR干涉仪的电离层相位延迟误差,与基于校正的方法相比,基于FR的方法电离层校正结果的标准偏差降至3.2厘米,方位角偏移方法的标准偏差降至2.0厘米(7.3厘米)。然而,还发现基于FR的方法容易被噪声污染,这在实际应用中可能是限制。此外,根据方位角偏移方法对电离层剩余相位的分析表明,当使用方位角偏移来减轻电离层对SAR干涉测量的影响时,方位角偏移和干涉式相位图像中的残留相位贡献是一个限制。当使用这两种方法来减轻InSAR上的电离层相位延迟误差时,这项研究可能会提供有用的信息。

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