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Feasibility of Replacing the Range Doppler Equation of Spaceborne Synthetic Aperture Radar Considering Atmospheric Propagation Delay with a Rational Polynomial Coefficient Model

机译:用有理多项式模型替换考虑大气传播延迟的星载合成孔径雷达距离多普勒方程的可行性

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摘要

Usually, the rational polynomial coefficient (RPC) model of spaceborne synthetic aperture radar (SAR) is fitted by the original range Doppler (RD) model. However, the radar signal is affected by two-way atmospheric delay, which causes measurement error in the slant range term of the RD model. In this paper, two atmospheric delay correction methods are proposed for use in terrain-independent RPC fitting: single-scene SAR imaging with a unique atmospheric delay correction parameter (plan 1) and single-scene SAR imaging with spatially varying atmospheric delay correction parameters (plan 2). The feasibility of the two methods was verified by conducting fitting experiments and geometric positioning accuracy verification of the RPC model. The experiments for the GF-3 satellite were performed by using global meteorological data, a global digital elevation model, and ground control data from several regions in China. The experimental results show that it is feasible to use plan 1 or plan 2 to correct the atmospheric delay error, no matter whether in plain, mountainous, or plateau areas. Moreover, the geometric positioning accuracy of the RPC model after correcting the atmospheric delay was improved to better than 3 m. This is of great significance for the efficient and high-precision geometric processing of spaceborne SAR images.
机译:通常,星载合成孔径雷达(SAR)的有理多项式系数(RPC)模型由原始距离多普勒(RD)模型拟合。但是,雷达信号受到双向大气延迟的影响,这会在RD模型的倾斜范围项中引起测量误差。本文提出了两种用于与地形无关的RPC拟合的大气延迟校正方法:具有唯一大气延迟校正参数的单场景SAR成像(方案1)和具有空间变化的大气延迟校正参数的单场景SAR成像(计划2)。通过对RPC模型进行拟合实验和几何定位精度验证,验证了这两种方法的可行性。使用全球气象数据,全球数字高程模型和中国几个地区的地面控制数据对GF-3卫星进行了实验。实验结果表明,无论是在平原,山区还是高原地区,使用方案1或方案2校正大气延迟误差都是可行的。此外,校正了大气延迟后,RPC模型的几何定位精度提高到了3 m以上。这对于星载SAR图像的高效,高精度几何处理具有重要意义。

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