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High-resolution spotlight spaceborne SAR focusing via modified-SVDS and deramping-based approach

机译:通过改进的SVDS和基于脱轨方法的高分辨率聚光星空SAR聚焦

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Fine resolution spaceborne spotlight synthetic aperture radar (SAR) imaging is typically affected by the problems of curved orbit and azimuth spectral aliasing, especially when the resolution achieves the decimetre level. In order to overcome these difficulties, a method is proposed here, which consists of the modified singular value decomposition Stolt (SVDS) and the deramping-based approach. The modified SVDS is designed to properly handle the influence induced by curved orbit, and the deramping-based approach is utilised to solve the azimuth spectral aliasing problem. The modified SVDS is derived from the original SVDS by further taking the singular value into consideration, which is more concise and efficient. In addition, the deramping-based approach is combined with numerical differentiation so as to accommodate the situation of curved orbit. The proposed method has smaller phase error and performs better than the generalised omega K method when resolution achieves decimetre level. Experiments carried out on point target simulation validate the effectiveness of the presented method. With focused scene size of 4 by 3 km, the range and azimuth resolutions can achieve 0.15 and 0.14 m, respectively.
机译:高分辨率的星载聚光合成孔径雷达(SAR)成像通常受弯曲轨道和方位频谱混叠问题的影响,尤其是当分辨率达到分米级时。为了克服这些困难,这里提出一种方法,该方法包括改进的奇异值分解Stolt(SVDS)和基于分道的方法。修改后的SVDS被设计为适当地处理由弯曲轨道引起的影响,并且基于解斜的方法被用来解决方位频谱混叠问题。修改后的SVDS通过进一步考虑奇异值而从原始SVDS派生而来,这更加简洁高效。另外,基于解斜的方法与数值微分相结合,以适应弯曲轨道的情况。当分辨率达到分米级时,所提出的方法具有较小的相位误差,并且比广义的ωK方法具有更好的性能。在点目标仿真上进行的实验验证了该方法的有效性。聚焦场景大小为4 x 3 km,范围和方位分辨率分别可以达到0.15和0.14 m。

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