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Effect of earth??s rotation and range foldover on space-based radar performance

机译:地球自转和距离折返对天基雷达性能的影响

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Space-based radar (SBR) by virtue of its motion generates a Doppler frequency component to the clutter return from any point on the Earth as a function of the SBR-Earth geometry. The effect of the rotation of the Earth around its own axis also adds an additional component to this Doppler frequency. The overall effect of the rotation of the Earth on the Doppler turns out to be two correction factors in terms of a crab angle affecting the azimuth angle, and a crab magnitude scaling the Doppler magnitude of the clutter patch. Interestingly, both these quantities depend only on the SBR orbit inclination and its latitude and not on the location of the clutter patch of interest. Further, the crab angle has maximum effect for an SBR on a polar orbit that is above the equator. The crab magnitude, on the other hand, peaks for an SBR on an equatorial orbit. Together with the range foldover phenomenon, their overall effect is to generate Doppler spread/splitting resulting in wider clutter notches that degrade the clutter nulling performance of adaptive processing techniques. A detailed performance analysis and methods to minimize these effects are discussed here
机译:天基雷达(SBR)凭借其运动生成了多普勒频率分量,该多普勒频率分量是地球上任何一点的杂波返回的函数,是SBR-地球几何形状的函数。地球绕自身轴旋转的影响也为此多普勒频率增加了一个额外的分量。事实证明,地球旋转对多普勒的总体影响是两个校正因素,即影响方位角的螃蟹角和缩放杂波斑块多普勒幅度的螃蟹幅度。有趣的是,这两个量仅取决于SBR轨道倾角及其纬度,而不取决于目标杂波斑块的位置。此外,蟹角对于赤道上方极地轨道上的SBR具有最大影响。另一方面,螃蟹的数量级在赤道轨道上达到SBR的峰值。与范围折叠现象一起,它们的总体效果是生成多普勒扩展/分裂,从而导致杂波陷波幅度变大,从而降低自适应处理技术的杂波归零性能。这里讨论了详细的性能分析和最小化这些影响的方法

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