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ENLARGING SAR PATCH-MAPPING AREA BY ANTENNA BEAM SCAN

机译:天线波束扫描扩大SAR贴图区域

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摘要

The approach for enlargement of SAR patch mapping area by antenna beam scan is investigated, which serves for moderate fine-resolution mapping of medium-sized terrain patches. The scanning angular velocity and the scanning angular scope are determined respectively. The angular velocity of the scanning antenna is controlled to scan over just one azimuth 3 dB beam width in the time interval during which the radar platform moves over one synthetic aperture length determined from the desired cross-range resolution, radar wavelength, nominal slant range, and squint angle. The scanning angular scope is mainly determined by the azimuth width of the terrain patch, nominal slant range, squint angle, platform velocity, and azimuth beam width. Finally, the related experimental results of an airborne SAR are presented. The linear range-Doppler algorithm is employed in image formation after motion compensation is conducted to remove the effect of transnational motion of the radar platform relative to the map center.
机译:研究了通过天线波束扫描来放大SAR斑块映射区域的方法,该方法可用于中等大小的地形斑块的中等精细分辨率的映射。分别确定扫描角速度和扫描角范围。控制扫描天线的角速度,以在雷达平台在一个合成孔径长度上移动的时间间隔内仅扫描一个3 dB方位角波束宽度,该合成孔径长度由所需的跨范围分辨率,雷达波长,标称倾斜范围,和斜视角度。扫描角范围主要由地形块的方位角宽度,标称倾斜范围,斜视角,平台速度和方位角波束宽度确定。最后,给出了机载SAR的相关实验结果。在进行运动补偿后,将线性范围多普勒算法用于图像形成,以消除雷达平台相对于地图中心的跨国运动的影响。

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