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Improved Channel Error Calibration Algorithm for Azimuth Multichannel SAR Systems

机译:方位多通道SAR系统的改进通道误差校准算法

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摘要

Multichannel synthetic aperture radar systems in azimuth can effectively suppress azimuth ambiguity and are promising in high-resolution wide-swath imaging. However, unavoidable channel errors will significantly degrade the performance of ambiguity suppression. Conventional subspace calibration methods usually estimate phase error via decomposing a Doppler-variant covariance matrix from one Doppler bin, and then average these errors estimated from several Doppler bins to improve the estimation accuracy, which will result in a large computational load. This letter presents an improved channel error calibration method, which works on the undersampled data of the individual azimuth channel. By a proposed matrix transformation method, the Doppler-variant covariance matrices will be transformed into a constant covariance matrix. Therefore, the improved calibration algorithm needs to estimate and decompose the new covariance matrix only once. The computation load could be greatly reduced. Moreover, the new covariance matrix can be estimated by training samples not only from range bins but also from Doppler bins, which will improve the estimation accuracy. Theoretical analysis and experiments based on simulations and measurements showed the high accuracy, efficiency, and robustness of the improved method, particularly in low signal-to-noise ratio.
机译:方位角上的多通道合成孔径雷达系统可以有效地抑制方位角模糊性,并且在高分辨率宽幅成像中很有前途。但是,不可避免的信道错误将大大降低歧义抑制的性能。常规的子空间校准方法通常通过从一个多普勒频点分解多普勒-方差协方差矩阵来估计相位误差,然后对从多个多普勒频点估计的这些误差求平均值以提高估计精度,这将导致较大的计算量。这封信提出了一种改进的通道误差校准方法,该方法适用于单个方位角通道的欠采样数据。通过提出的矩阵变换方法,将多普勒-方差协方差矩阵变换为常数协方差矩阵。因此,改进的校准算法只需要估计和分解一次新的协方差矩阵。可以大大减少计算量。此外,新的协方差矩阵不仅可以通过训练样本来进行估计,而且可以通过训练距离区间和多普勒区间的样本来提高估计精度。基于仿真和测量的理论分析和实验表明,改进方法具有很高的准确性,效率和鲁棒性,尤其是在信噪比较低的情况下。

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