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High resolution image formation method based on the realistic spaceborne SAR modeling and simulation

机译:基于逼真的星载SAR建模与仿真的高分辨率成像方法

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In studying image formation methods of the spacebome synthetic aperture radar (SAR), we utilize its modeling and simulation (M&S) to generate its realistic simulated rawdata. Especially, for the spaceborne spotlight SAR, we perform M&S that reflects its real characteristics, and get rawdata that are almost identical to one acquired by the real SAR sensor. Particularly, operations of the spaceborne spotlight SAR are simulated based on models of its dynamics and geometry related to timeline, orbital state vector, antenna beam pattern, azimuth beam steering, and etc. In addition, the target observation of it is modeled as evaluating observation angles related to point targets within the acquisition time. Finally, based on the received echo signal model, rawdata are simulated for point targets taking into account its real operation. For the high resolution SAR image formation, simulated rawdata are focused with the extended chirp scaling algorithm. Especially, its range cell migration (RCM) factor is the key one for the exact range cell migration correction. In order to do it accurately, the Doppler frequency and the effective velocity have to be calculated correctly for all range sample bins. For precise processing, we suggest the method to analyze them using orbital state vectors and scene coordinates based on two way slant range model. In experiments, system parameters and imaging scenarios to simulate rawdata acquisition of the spaceborne spotlight SAR system are defined. The processing results for realistic simulated rawdata of it are presented to evaluate the performance and the effectiveness of proposed methods. Its results show that suggested methods are applicable to form the high resolution spaceborne spotlight SAR image.
机译:在研究太空生物合成孔径雷达(SAR)的图像形成方法时,我们利用其建模与仿真(M&S)来生成其逼真的模拟原始数据。特别是对于星载聚光SAR,我们执行反映其真实特征的M&S,并获得与真实SAR传感器采集的原始数据几乎相同的原始数据。特别是,基于与时间线,轨道状态矢量,天线波束方向图,方位波束转向等相关的动力学和几何模型,模拟了星载聚光SAR的操作。此外,将其目标观测建模为评估观测采集时间内与点目标有关的角度。最后,基于接收到的回波信号模型,将原始数据模拟为点目标,并考虑其实际操作。对于高分辨率SAR图像形成,使用扩展的线性调频缩放算法聚焦模拟的原始数据。特别是,它的距离像元迁移(RCM)因子是进行精确距离像元迁移校正的关键因素。为了准确地执行此操作,必须正确计算所有范围样本仓的多普勒频率和有效速度。为了进行精确处理,我们建议使用基于两个状态的倾斜范围模型的轨道状态向量和场景坐标对它们进行分析的方法。在实验中,定义了用于模拟星载聚光SAR系统原始数据采集的系统参数和成像方案。给出了实际模拟原始数据的处理结果,以评估所提出方法的性能和有效性。结果表明,所建议的方法适用于形成高分辨率星载聚光SAR图像。

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