A novel beam direction determination method for minimizing Doppler centroid in GEO SAR

Y. Wu, Guangcai Sun, Jun Yang, Jianlai Chen, M. Xing
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引用次数: 2

Abstract

Due to the effects of the earth's rotation and the satellite's elliptical orbit, the Doppler centroid varies along the orbit in geosynchronous earth orbit synthetic aperture radar (GEO SAR). With an ultrahigh orbit height, the beam may illuminate outside the earth surface with a rotation angle large than 9 degrees. Therefore, the usual attitude steering methods to minimize the Doppler centroid in low earth orbit SAR (LEO SAR) may not be suitable for GEO SAR. Considering the above two effects of GEO SAR and the beam illuminating restriction, a beam determination method to minimize Doppler centroid in GEO SAR is proposed in this paper. Guaranteeing that the beam not illuminate outside the earth surface, the proposed method can drastically decrease the Doppler centroid and the equivalent squint angle.
一种新的GEO SAR波束方向确定方法
由于地球自转和卫星椭圆轨道的影响,同步地球轨道合成孔径雷达(GEO SAR)的多普勒质心沿轨道变化。由于轨道高度超高,光束可以以大于9度的旋转角度照射地球表面外。因此,低地球轨道SAR (LEO SAR)中常用的最小化多普勒质心的姿态控制方法可能不适用于GEO SAR。考虑到GEO SAR的上述两种影响和波束照射限制,本文提出了一种最小化GEO SAR多普勒质心的波束确定方法。该方法在保证光束不照射到地球表面以外的前提下,大大降低了多普勒质心和等效斜视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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