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A High-Order Imaging Algorithm for High-Resolution Spaceborne SAR Based on a Modified Equivalent Squint Range Model

机译:基于修正等效斜视范围模型的高分辨率星载saR高阶成像算法

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摘要

Two challenges have been faced in signal processing of ultrahigh-resolution spaceborne synthetic aperture radar (SAR). The first challenge is constructing a precise range model, and the second one is to develop an efficient imaging algorithm since traditional algorithms fail to process ultrahigh-resolution spaceborne SAR data effectively. In this paper, a novel high-order imaging algorithm for high-resolution spaceborne SAR is presented. First, a modified equivalent squint range model (MESRM) is developed by introducing equivalent radar acceleration into the equivalent squint range model, and it is more suitable for high-resolution spaceborne SAR. The signal model based on the MESRM is also presented. Second, a novel high-order imaging algorithm is derived. The insufficient pulse-repetition frequency problem is solved by an improved subaperture method, and accurate focusing is achieved through an extended hybrid correlation algorithm. Simulations are performed to validate the presented algorithm.
机译:超高分辨率星载合成孔径雷达(SAR)的信号处理面临两个挑战。第一个挑战是构建精确的距离模型,第二个挑战是开发有效的成像算法,因为传统算法无法有效处理超高分辨率星载SAR数据。本文提出了一种新的高分辨率星载SAR高阶成像算法。首先,通过将等效雷达加速度引入等效斜视距离模型来开发改进的等效斜视距离模型(MESRM),它更适合于高分辨率星载SAR。还提出了基于MESRM的信号模型。其次,推导了一种新颖的高阶成像算法。通过改进的子孔径方法解决了脉冲重复频率不足的问题,并通过扩展的混合相关算法实现了精确的聚焦。进行仿真以验证所提出的算法。

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