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2-D Beam Steering Method for Squinted High-Orbit SAR Imaging

机译:二维光束转向方法,用于斜视高轨道SAR成像

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Since path curvature becomes severer for higher orbit synthetic aperture radar (SAR), the stripmap mode may not provide a reliable azimuth resolution under different look angles or at different positions. Beam steering is especially valuable herein for adjusting the azimuth resolution under different observation conditions by designing the antenna steering rate. Moreover, considering that the large range migration and center range variation in the squint mode may increase the echo length and reduce the achievable scene width, we proposed a novel 2-D beam steering (TDBS) method, which promises not only a required azimuth resolution but also a wide swath (or shortened echo length) at squint when cooperated with the variable interpulse time (VIPT) technique. The simulation results obtained under different look directions are shown to validate the effectiveness of the proposed beam controlling method.
机译:由于路径曲率变得更严格,用于更高轨道合成孔径雷达(SAR),所以条带图模式可能在不同的外观角度或不同位置处不提供可靠的方位角分辨率。 通过设计天线转向速率,光束转向在本文中特别有价值在不同观察条件下调整方位分辨率。 此外,考虑到静脉模式中的大范围迁移和中心范围变化可以增加回波长度并降低可实现的场景宽度,我们提出了一种新颖的2-D光束转向(TDB)方法,其不仅承担所需的方位角分辨率 同时在与可变介时间(VIPT)技术配合时,在斜视时,也是一个宽的条子(或缩短的回声长度)。 示出了在不同外向方向下获得的模拟结果验证了所提出的光束控制方法的有效性。

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