A New 2D Doppler Steering Method For Beam Synchronization In Format Flying Satellites InSAR Systems

Chipan Lai, Aifang Liu, Dong Mu, Yixuan Zhao
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Abstract

As we know that beam synchronization is a key technology for format flying satellites InSAR (interferometric synthetic aperture radar) system. Also, the Doppler Center Frequency is a very important parameter for spaceborne SAR signal processing. The more decrease of residual Doppler Center Frequency, the more convenience to SAR image formation. In this paper, the expression of Doppler Center Frequency is given after the analysis of the geometry of spaceborne SAR imaging. It considered the elliptical orbit and the pitch steering angle. For the sake of minimizing the Doppler Center Frequency, a new 2 dimensional (2D) attitude steering method-New Zero Doppler Steering, is suggested through the analysis of the expression. The new method can minimize the residual Doppler Centroid to absolutely zero Hz, and if all the satellites in the formation applying this method, the beam synchronization of the system can be realized and the common Doppler spectrum of tow images is maximal. The computer simulation results prove the validity of the method and show that the accuracy of New Zero Doppler Steering method is better than the Total Zero Doppler Steering theoretically. The New Zero Doppler Steering method can be applied to the future spaceborne SAR and formation flying satellite InSAR system.
一种新的二维多普勒导引方法用于格式飞行卫星InSAR系统的波束同步
波束同步是格式飞行卫星干涉合成孔径雷达系统的关键技术。同时,多普勒中心频率也是星载SAR信号处理的一个重要参数。残余多普勒中心频率越低,越有利于SAR图像的形成。本文通过对星载SAR成像的几何分析,给出了多普勒中心频率的表达式。它考虑了椭圆轨道和俯仰转向角。为了使多普勒中心频率最小,通过对表达式的分析,提出了一种新的二维姿态转向方法——新零多普勒转向。该方法可使编队中所有卫星的残余多普勒质心极小化至绝对零Hz,实现了系统的波束同步,使两幅图像的公共多普勒频谱达到最大值。计算机仿真结果证明了该方法的有效性,并表明新零多普勒转向方法的精度在理论上优于全零多普勒转向方法。新型零多普勒转向方法可应用于未来星载SAR和编队飞行卫星InSAR系统。
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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