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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Study of a GB-SAR Rail Error Correction Method Based on an Incident Angle Model
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Study of a GB-SAR Rail Error Correction Method Based on an Incident Angle Model

机译:基于入射角模型的GB-SAR轨道误差校正方法研究

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摘要

With ground-based synthetic aperture radar (GB-SAR) discontinuous observation, the effect of rail error, caused by multiple installations, on imaging is difficult to eliminate with difference correction. In this article, the impact of rail error on each point, which is related to the incident angle of each point, is theoretically analyzed. This is the first attempt to introduce a baseline in the application of GB-SAR microdeformation to build a model that estimates the incident angle of each point in the image. Then, the rail error correction model is established using the incident angle, and the influence of the rail error on the image point is weakened using this model. The experimental results show that the precision of the estimated incidence angle cosine is 0.0132, which is comparable to the same angle cosine value measured by the total station. By applying the correction method in this article, different impacts of each point in the image, caused by rail error from multiple instrument installations, can be weakened to below 0.1 mm, meeting the requirement of GB-SAR microdeformation measurement submillimeter accuracy.
机译:采用地面的合成孔径雷达(GB-SAR)不连续观察,轨道误差的效果难以消除差异校正。在本文中,理论上地分析了与每个点的入射角有关的轨道误差的影响。这是第一次尝试在应用GB-SAR微刚刚的应用中引入基线,以构建估计图像中每个点的入射角的模型。然后,使用该模型使用入射角建立轨道误差校正模型,并且使用该模型削弱了轨道误差对图像点的影响。实验结果表明,估计的入射角余弦的精度为0.0132,其与通过总站测量的相同角度余弦值相当。通过在本文中应用校正方法,由多个仪器装置的轨道误差引起的图像中每个点的不同影响,可以削弱到0.1毫米以下,满足GB-SAR微刚刚的要求逐渐测量淹没。

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