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A Robust Imaging Algorithm for Squint Mode Multi-Channel High-Resolution and Wide-Swath SAR With Hybrid Baseline and Fluctuant Terrain

机译:具有混合基线和起伏地形的斜视模式多通道高分辨率宽幅SAR的鲁棒成像算法

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摘要

In this paper, the squint mode multi-channel (MC) synthetic aperture radar (SAR) with hybrid baseline and fluctuant terrain is proposed and studied for high-resolution and wide-swath (HRWS) imaging. During the imaging process, due to the cross-track baseline and fluctuant terrain, the azimuth signal reconstruction is the kernel problem for this imaging mode. To deal with this problem, in this paper a robust azimuth signal reconstruction approach is proposed, where terrain elevation of scene is considered. At first, the pre-processing of the linear range cell migration correction (RCMC) and topography-independent phase compensation is implemented in the azimuth time domain. After that, combining the azimuth echo signal characteristics, the local polynomial Fourier transform (LPFT) is utilized to obtain the coarse-focused SAR image. Then, based on joint pixel pair vector and robust Capon beamforming (RCB), a Doppler ambiguity suppression approach is proposed to reconstruct the Doppler ambiguity-free azimuth signal in LPFT frequency domain, during which the influence of the cross-track baseline component and fluctuant terrain is eliminated using the coarse digital elevation model (DEM) for the imaging scene. At last, the chirp scaling imaging algorithm is utilized to focus the SAR image. The effectiveness of the proposed imaging approach is demonstrated via simulated and real measured squint mode MC-HRWS SAR data.
机译:本文提出了具有混合基线和起伏地形的斜视模式多通道(SAR)合成孔径雷达(SAR),并对其进行高分辨率和宽幅(HRWS)成像研究。在成像过程中,由于跨轨基线和起伏的地形,方位信号重构是该成像模式的核心问题。为了解决这个问题,本文提出了一种鲁棒的方位角信号重构方法,该方法考虑了场景的地形高程。首先,在方位角时域中进行线性范围像元迁移校正(RCMC)和与地形无关的相位补偿的预处理。之后,结合方位回波信号特征,利用局部多项式傅里叶变换(LPFT)获得粗聚焦SAR图像。然后,基于联合像素对向量和鲁棒Capon波束形成(RCB),提出了一种多普勒模糊抑制方法,以重建LPFT频域中的多普勒无模糊方位角信号,在此过程中跨轨基线分量的影响和波动使用用于成像场景的粗略数字高程模型(DEM)消除了地形。最后,利用线性调频缩放成像算法对SAR图像进行聚焦。通过模拟和实际测量的斜视模式MC-HRWS SAR数据证明了所提出的成像方法的有效性。

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