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Raw Data-Based Motion Compensation for High-Resolution Sliding Spotlight Synthetic Aperture Radar

机译:基于原始的基于数据的高分辨率滑动聚光灯合成孔径雷达的运动补偿

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摘要

For accurate motion compensation (MOCO) in airborne synthetic aperture radar (SAR) imaging, a high-precision inertial navigation system (INS) is required. However, an INS is not always precise enough or is sometimes not even included in airborne SAR systems. In this paper, a new, raw, data-based range-invariant motion compensation approach, which can effectively extract the displacements in the line-of-sight (LOS) direction, is proposed for high-resolution sliding spotlight SAR mode. In this approach, the sub-aperture radial accelerations of the airborne platform are estimated via a well-developed weighted total least square (WTLS) method considering the time-varying beam direction. The effectiveness of the proposed approach is validated by two airborne sliding spotlight C band SAR raw datasets containing different types of terrain, with a high spatial resolution of about 0.15 m in azimuth.
机译:为了准确的运动补偿(MOCO)在空气中的合成孔径雷达(SAR)成像中,需要一种高精度的惯性导航系统(INS)。然而,INS并不总是足够精确或有时甚至不包括在空中SAR系统中。在本文中,提出了一种用于高分辨率滑动聚光灯SAR模式的新的,基于数据的基于基于基于基于基于数据的范围不变运动补偿方法,其可以有效地提取视图线(LOS)方向上的位移。在这种方法中,考虑到时变波束方向的良好开发的加权总量(WTL)方法估计了空气载体的子孔径径向加速度。所提出的方法的有效性由两个空中滑动聚光灯C频带SAR原始数据集验证,其中包含不同类型的地形,具有约0.15米的方位的高空间分辨率。

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