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Synthetic aperture radar calibration using reference reflectors

机译:使用参考反射器校准合成孔径雷达

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A simple expression for the terrain backscatter coefficient is derived in terms of the integrated power of an adjacent known radar reflector in a synthetic aperture radar (SAR) image. It is shown that this technique for SAR image calibration is independent of the radar system focus or partial coherence and thereby possesses an important advantage over the usual technique, which relies on an estimate of the peak of the reflector impulse response. Results from airborne SAR overflights of corner reflectors and active radar calibrators are used to demonstrate the validity and consistency of the method and to show that the method is robust under defocus caused by an incorrect FM rate or inadequate motion compensation of data collected during turbulence. It is also shown that the fading errors associated with the integral method are comparable to or slightly worse than those associated with the peak estimation method. However, this small disadvantage is outweighed by the fact that the integral method is independent of actual resolution.
机译:根据合成孔径雷达(SAR)图像中相邻的已知雷达反射器的积分功率,可以得出地形反向散射系数的简单表达式。结果表明,这种用于SAR图像校准的技术与雷达系统的聚焦或部分相干性无关,因此与常规技术相比具有重要的优势,后者依赖于对反射器脉冲响应峰值的估计。角反射器和有源雷达校准器的机载SAR飞越结果证明了该方法的有效性和一致性,并表明该方法在散焦下由于不正确的FM率或湍流过程中收集的数据运动补偿不足而具有鲁棒性。还表明,与积分方法相关的衰落误差与与峰值估计方法相关的衰落误差相当或稍差。但是,积分方法与实际分辨率无关,这一事实弥补了这一小缺点。

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