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A Novel Imaging Algorithm Based on Keystone Transform for Heliborne Forward-moving RoSAR System

机译:一种基于Keystone变换的新型成像算法,用于Heliborne前移动rosar系统

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This paper deals with the issue of high-resolution imaging with the Heliborne forward-moving rotary synthetic aperture radar (RoSAR) system. RoSAR is a new type of SAR system, which uses the rotation of radar antenna to obtain azimuth synthetic aperture. In the forward RoSAR imaging geometric model, there is not only the azimuth velocity of antenna scanning but also the forward velocity of the platform. Therefore, the variation of target slant distance process reflects more complex spatial variation characteristics in the spectrum of the echo signal. A modified imaging algorithm based on the Keystone transforms is proposed for the Heliborne forward RoSAR system. With the forward-moving RoSAR imaging configuration, the relationship between the platform forward movement and the space-variant characteristics of the spectrum is given to construct the corresponding phase compensation function. A modified second-order keystone transform is used to correct the space-variant range cell migration term, meanwhile, the range-variant distortion in azimuth is removed by using the Chirp Z transform. Interpolation is not involved in this proposed algorithm, and its feasibility is verified by the simulation experiments.
机译:本文涉及与Heliborne前移动旋转合成孔径雷达(ROSAR)系统的高分辨率成像问题。 ROSAR是一种新型的SAR系统,它使用雷达天线的旋转来获得方位角合成孔径。在前向仓成像几何模型中,不仅有天线扫描的方位速,而且还有平台的前向速度。因此,目标倾斜距离处理的变化反映了回波信号的光谱中的更复杂的空间变化特性。提出了一种基于Keystone变换的修改成像算法,用于Heliborne前进的ROS系统。利用前进的ROSAR成像配置,对平台前向运动与频谱的空间变型特性之间的关系构成相应的相位补偿功能。同时使用修改的二阶梯形变换来校正空间变量范围小区迁移项,通过使用Chirp Z变换来除去方位角的范围变形失真。插值不参与该算法,并通过模拟实验验证其可行性。

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