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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Calibration of a synthetic aperture radiometer
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Calibration of a synthetic aperture radiometer

机译:合成孔径辐射计的校准

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摘要

Calibration algorithms for a synthetic aperture microwave radiometer are presented. The calibration is geared to Earth remote sensing applications and is demonstrated on an airborne prototype thinned array imager. Two approaches to the system calibration are presented. The first utilizes commonly available reference brightness temperature scenes, such as open water, and the second utilizes data collected on the antenna range. Both algorithms yield spatial response information which is cast in matrix form and inverted to obtain the image reconstruction formula. Experimental results are examined, and errors in some reconstructed images are linked to the present prototype antenna design. Algorithms for improving the synthesized antenna pattern sidelobe performance are also presented. In one solution, the pattern efficiency is optimized by minimizing the pattern outside a defined beam. In another solution, the patterns are matched to a desired model pattern by the method of least squared errors. Both techniques offer an attractive alternative to aperture weighting.
机译:介绍了合成孔径微波辐射计的校准算法。该校准适用于地球遥感应用,并在机载原型薄阵列成像仪上进行了演示。提出了两种系统校准方法。第一种利用通常可用的参考亮度温度场景,例如开阔水域,第二种利用在天线范围内收集的数据。两种算法都产生空间响应信息,这些信息以矩阵形式转换并求逆以获得图像重建公式。检查了实验结果,并将一些重建图像中的错误与当前的原型天线设计联系在一起。还提出了用于改善合成天线方向图旁瓣性能的算法。在一种解决方案中,通过最小化限定光束外部的图案来优化图案效率。在另一解决方案中,通过最小二乘误差的方法将图案与期望的模型图案匹配。两种技术都可以替代光圈加权。

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