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The Impact of System Effects on Estimates of Faraday Rotation From Synthetic Aperture Radar Measurements

机译:系统效应对合成孔径雷达测量法拉第旋转估计的影响

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摘要

Radio waves traversing the Earth's ionosphere suffer from Faraday rotation with noticeable effects on measurements from lower frequency space-based radars, but these effects can be easily corrected given estimates of the Faraday rotation angle, i.e., Ω. Several methods to derive Ω from polarimetric measurements are known, but they are affected by system distortions (crosstalk and channel imbalance) and noise. A first-order analysis for the most robust Faraday rotation estimator leads to a differentiable expression for the bias in the estimate of Ω in terms of the amplitudes and phases of the distortion terms and the covariance properties of the target. The analysis applies equally to L-band and P-band. We derive conditions on the amplitudes and phases of the distortion terms that yield the maximum bias and a compact expression for its value for the important case where Ω = 0. Exact simulations confirm the accuracy of the first-order analysis and verify its predictions. Conditions on the distortion amplitudes that yield a given maximum bias are derived numerically, and the maximum bias is shown to be insensitive to the amplitude of the channel imbalance terms. These results are important not just for correcting polarimetric data but also for assessing the accuracy of the estimates of the total electron content derived from Faraday rotation.
机译:穿越地球电离层的无线电波会受到法拉第旋转的影响,这对低频天基雷达的测量产生了显着影响,但是在估算法拉第旋转角(即Ω)的情况下,可以轻松纠正这些影响。从极化测量得出Ω的几种方法是已知的,但是它们会受到系统失真(串扰和信道不平衡)和噪声的影响。对于最鲁棒的法拉第旋转估计器的一阶分析会导致根据失真项的幅度和相位以及目标的协方差特性,对Ω估计中的偏差进行微分表达。该分析同样适用于L波段和P波段。对于Ω= 0的重要情况,我们得出了失真项的幅度和相位上的条件,这些条件会产生最大偏差并为其值提供一个紧凑的表达式。精确的仿真证实了一阶分析的准确性并验证了其预测。数值得出产生给定最大偏置的失真幅度的条件,并且最大偏置对信道不平衡项的幅度不敏感。这些结果不仅对于校正极化数据很重要,而且对于评估从法拉第旋转得出的总电子含量的估计准确性也很重要。

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    Quegan S.; Lomas M.R.;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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