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The effect of topography on SAR calibration

机译:地形对SAR校准的影响

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摘要

During normal synthetic aperture radar (SAR) processing, a flat Earth is assumed when performing radiometric corrections such as antenna pattern and scattering area removal. The authors examine the effects of topographic variations on these corrections. Local slopes will cause the actual scattering area to be different from that calculated using the flat Earth assumption. It is shown that this effect may easily cause calibration errors larger than a decibel. Ignoring the topography during antenna pattern removal may also introduce errors of several decibels in the case of airborne systems. The effect of topography on antenna pattern removal is expected to be negligible for spaceborne SARs. The authors show how these effects can be taken into account if a digital elevation model is available for the imaged area. The errors are quantified for two different types of terrain, a moderate relief area near Tombstone, AZ, and a high relief area near Oetztal in the Austrian Alps. The authors show errors for two well-known radar systems, the C-band ERS-1 spaceborne radar system and the three frequency NASA/JPL airborne SAR system (AIRSAR).
机译:在常规的合成孔径雷达(SAR)处理过程中,执行辐射校正(例如天线方向图和散射区域去除)时,假定地球是平坦的。作者研究了地形变化对这些校正的影响。局部斜率将导致实际散射面积与使用平坦地球假设所计算的散射面积不同。结果表明,这种影响很容易导致校准误差大于分贝。在机载系统的情况下,在去除天线方向图时忽略地形可能还会引入几分贝的误差。对于星载SAR,地形对天线方向图去除的影响预计可以忽略不计。作者展示了如果数字高程模型可用于成像区域,那么如何考虑这些影响。对于两种不同类型的地形,对误差进行了量化:在奥地利阿尔卑斯山的Tombstone附近有一个中等的起伏区域,在Oetztal附近有一个高起伏的区域。作者展示了两个著名的雷达系统,C波段ERS-1星载雷达系统和三频NASA / JPL机载SAR系统(AIRSAR)的错误。

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