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A subaperture imaging scheme for wide azimuth beam airborne SAR based on modified RMA with motion compensation

机译:基于带运动补偿的改进RMA的宽方位波束机载SAR子孔径成像方案

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Airborne SAR imaging processing needs to estimate motion error to compensate non-ideal trajectory. In this paper, a subaperture imaging scheme for wide azimuth beam airborne SAR systems is proposed. First, the motion error is estimated from the subaperture data and the modified range migration algorithm is applied to obtain the coarse focused image, whose azimuth resolution corresponds to the subaperture Doppler bandwidth. The subaperture image is then projected into a fine grid image, whose coordinates is defined by the imaging geometry. As the subaperture data stream is coming, the azimuth resolution of the grid image will become higher and higher. Finally, the fine image with the azimuth resolution corresponding to the full aperture data can be obtained. Since the motion error estimation is based on the sub-aperture data, the imaging processing is suitable for real-time SAR imaging.
机译:空中SAR成像处理需要估计运动错误以补偿非理想的轨迹。在本文中,提出了一种用于宽方位角束空气传播SAR系统的子射线成像方案。首先,从子地图数据估计运动误差,并且施加修改范围迁移算法以获得粗略聚焦图像,其方位角分辨率对应于子孔节多普勒带宽。然后将子图形图像投影到细网格图像中,其坐标由成像几何定义。随着子地图数据流来,电网图像的方位角分辨率变高,更高。最后,可以获得具有与全孔径数据对应的方位角分辨率的细图像。由于运动误差估计基于子孔径数据,因此成像处理适用于实时SAR成像。

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