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A New Analytical Model to Study the Ionospheric Effects on VHF/UHF Wideband SAR Imaging

机译:研究电离层对VHF / UHF宽带SAR成像的新分析模型

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With a view to detecting foliage-obscured/ground-obscured targets on a global scale, low frequency (i.e., very high frequency (VHF)/ultrahigh frequency (UHF) band) and wide bandwidth is a trend in future spaceborne synthetic aperture radar (SAR) system design. However, due to the dispersion of ionosphere, VHF/UHF wide bandwidth SAR signals inevitably experience adverse effects. In contrast to narrow bandwidth SAR at VHF/UHF, quadratic and cubic ionospheric phase errors will introduce noticeable effects on future wide-bandwidth SAR systems. Traditional evaluation models based on Taylor series expansion may become inaccurate when an extremely wide bandwidth is considered. With a focus on this this issue, first, the shortcoming of Taylor series expansion of ionospheric phase errors is briefly discussed in this paper. Then, a new analytical model based on Legendre orthogonal polynomials is developed, which is expected to be widely applicable, especially for low-frequency and wide-bandwidth SAR systems. Finally, compared with previous models based on Taylor series expansion, numerical simulations and evaluations show the superiority of the new model.
机译:为了在全球范围内检测树叶被遮挡/地面被遮挡的目标,低频(即,非常高的频率(VHF)/超高频(UHF)的频带)和宽带宽是未来星载合成孔径雷达的趋势( SAR)系统设计。但是,由于电离层的分散,VHF / UHF宽带SAR信号不可避免地会受到不利影响。与VHF / UHF的窄带SAR相比,二次和三次电离层相位误差将对未来的宽SAR系统产生明显影响。当考虑到非常宽的带宽时,基于泰勒级数展开的传统评估模型可能会变得不准确。着眼于这个问题,首先,本文简要讨论了电离层相位误差的泰勒级数展开的缺点。然后,开发了一种基于勒让德正交多项式的新解析模型,有望被广泛应用,特别是在低频和宽带SAR系统中。最后,与以前基于泰勒级数展开式的模型相比,数值模拟和评估表明了新模型的优越性。

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