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Modified Chirp Scaling Algorithm for Circular Trace Scanning Synthetic Aperture Radar

机译:圆形轨迹扫描合成孔径雷达的改进Chirp缩放算法

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For circular trace scanning synthetic aperture radar (CTSSAR) with a circular track, the conventional hyperbolic equation becomes inadequate to express the range history of a point target accurately, and when it comes to the wide swath observation and imaging, the range variance makes it even harder to focus the target on the edge of the scene. Thus, an expression with high-order terms is needed to approximate the range history and the range variance should also be considered in the imaging algorithm. In this paper, based on the method of series reversion, a fourth-order approximated range model is established for the CTSSAR processing and the 2-D spectrum is derived for the echo signal in CTSSAR with circular trajectory. At the same time, in order to deal with the range-variant range cell migration problem in large-area CTSSAR imaging, a modified chirp scaling algorithm is proposed to realize precise wide swath CTSSAR focusing. Experiments and analyses are performed to validate the effectiveness of the proposed algorithm.
机译:对于具有圆形轨迹的圆形轨迹扫描合成孔径雷达(CTSSAR),传统的双曲线方程式不足以精确地表达点目标的距离历史,并且在进行宽幅观测和成像时,距离变化使其均匀很难将目标聚焦在场景的边缘。因此,需要具有高阶项的表达式来近似范围历史,并且在成像算法中还应考虑范围方差。本文基于序列回归的方法,建立了CTSSAR处理的四阶近似范围模型,并推导了CTSSAR中具有圆形轨迹的回波信号的二维频谱。同时,为了解决大面积CTSSAR成像中的距离变化距离细胞迁移问题,提出了一种改进的线性调频缩放算法,以实现精确的宽幅CTSSAR聚焦。进行实验和分析以验证所提出算法的有效性。

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