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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Total zero Doppler Steering-a new method for minimizing the Doppler centroid
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Total zero Doppler Steering-a new method for minimizing the Doppler centroid

机译:总零多普勒转向-一种最小化多普勒质心的新方法

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摘要

This letter presents a new method, called total Zero Doppler steering, to perform yaw and pitch steering for spaceborne synthetic aperture radar (SAR) systems. The new method reduces the Doppler centroid to theoretically 0 Hz, independent of the range position of interest. Residual errors are only due to pointing inaccuracy or due to approximations in the implementation of the total zero Doppler steering law. This letter compares the new method with currently applied methods. The attitude angles and the residual Doppler centroid frequencies are calculated and depicted exemplarily for the parameters of TerraSAR-X, for which the new method will be implemented and used. The new method provides a number of advantages. The low residual Doppler centroid and the reduced variation of the Doppler centroid over range allow a more accurate Doppler centroid estimation. Due to the low residual Doppler centroid, the synthetic aperture radar (SAR) processing can be alleviated, since the range cell migration is reduced and the Doppler frequencies are low. This facilitates the use of very efficient processing algorithms, which are based on approximations whose quality is better for low Doppler frequencies. The new method will furthermore optimize the overlap of the azimuth spectra of SAR image pairs for cross-track interferometry. Low Doppler centroids will also reduce the impact of coregistration errors on the interferometric phase. Furthermore, scalloping corrections in the ScanSAR processing are alleviated due to the low variation of the Doppler centroid over range.
机译:这封信提出了一种称为总零多普勒转向的新方法,用于执行星载合成孔径雷达(SAR)系统的偏航和俯仰转向。新方法将多普勒质心从理论上降低到0 Hz,与目标范围位置无关。残余误差仅是由于指向不准确或由于总零多普勒转向定律的实施中的近似值所致。这封信将新方法与当前应用的方法进行了比较。针对TerraSAR-X的参数计算并示例性地描述了姿态角和残余多普勒质心频率,为此将实施和使用新方法。新方法具有许多优点。低残留多普勒质心和减小的多普勒质心在整个范围内的变化允许更准确的多普勒质心估计。由于残留的多普勒质心低,合成孔径雷达(SAR)的处理可以减轻,因为距离单元的迁移减少了,多普勒频率也很低。这有助于使用非常有效的处理算法,该算法基于近似值,对于低多普勒频率,其质量更好。新方法还将进一步优化SAR图像对的方位角频谱的重叠,以进行跨轨干涉测量。低多普勒质心还将减少干涉误差对相差的影响。此外,由于多普勒质心在整个范围内的变化很小,可以减轻ScanSAR处理中的扇贝校正。

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