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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Local Fringe Frequency Estimation Based on Multifrequency InSAR for Phase-Noise Reduction in Highly Sloped Terrain
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Local Fringe Frequency Estimation Based on Multifrequency InSAR for Phase-Noise Reduction in Highly Sloped Terrain

机译:基于多频InSAR的局部边缘频率估计在高倾斜地形中降低相位噪声

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摘要

The interferometric phases in highly sloped terrain have the characteristics of large fringe density, narrow width, low correlation, and under-sampling. The local fringe frequ- ency (LFF) is a criterion to evaluate the trend and magnitude of the local terrain gradient and can be employed to improve the quality of interferograms. The results of the traditional LFF estimation method can be affected by phase noise, and sometimes the phase unwrapping (PU) operation is also required for some local regions. When it comes to highly sloped terrain, the phenomenon of phase under-sampling may cause incorrectness in the absolute interferometric phase during the operation of PU and may then influence the accuracy of the whole estimation. In order to solve this problem, this letter proposes an extended maximum-likelihood method for LFF estimation based on the multifrequency interferometric synthetic aperture radar (InSAR) data. Through the differences in the LFF between the different frequency InSAR data, the estimation quality map is introduced to modify the large error in certain regions by local 2-D fitting and thus achieves a accurate estimation of LFF in highly sloped terrain. Finally, the estimated results of LFF are used to guide the process of phase filtering. Simulated data and real airborne dual-frequency InSAR data are both employed to validate this proposed method.
机译:高倾斜地形中的干涉相具有条纹密度大,宽度窄,相关性低和欠采样的特征。局部条纹频率(LFF)是评估局部地形梯度的趋势和幅度的标准,可用于改善干涉图的质量。传统LFF估计方法的结果可能会受到相位噪声的影响,有时某些局部区域也需要进行相位展开(PU)操作。当涉及到高度倾斜的地形时,相位欠采样现象可能会在PU工作期间导致绝对干涉相位的不正确,从而影响整个估算的准确性。为了解决这个问题,这封信提出了一种基于多频干涉合成孔径雷达(InSAR)数据的LFF估计的扩展最大似然法。通过不同频率InSAR数据之间LFF的差异,引入估计质量图以通过局部2D拟合修改某些区域中的大误差,从而在高坡度地形中实现LFF的准确估计。最后,LFF的估计结果用于指导相位滤波的过程。仿真数据和实际机载双频InSAR数据均用于验证该方法。

著录项

  • 来源
    《IEEE Geoscience and Remote Sensing Letters 》 |2017年第9期| 1527-1531| 共5页
  • 作者单位

    Beijing Key Laboratory of Embedded Real-Time Information Processing Technology, Beijing Institute of Technology, Beijing, China;

    Radar Research Laboratory, School of Information and Electronics, Beijing Institute of Technology, Beijing, China;

    Radar Research Laboratory, School of Information and Electronics, Beijing Institute of Technology, Beijing, China;

    Radar Research Laboratory, School of Information and Electronics, Beijing Institute of Technology, Beijing, China;

    Radar Research Laboratory, School of Information and Electronics, Beijing Institute of Technology, Beijing, China;

    Beijing Key Laboratory of Embedded Real-Time Information Processing Technology, Beijing Institute of Technology, Beijing, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Frequency estimation; Maximum likelihood estimation; Frequency conversion; Correlation; Phase noise; Frequency-domain analysis;

    机译:频率估计;最大似然估计;频率转换;相关性;相位噪声;频域分析;

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