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Fast time domain algorithm for missile-borne bistatic forward-looking SAR based on ground elliptical polar coordinate

机译:基于地面椭圆极坐标的弹载双基地前视SAR快速时域算法

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Missile-borne bistatic forward-looking synthetic aperture radar (BFSAR) plays a significant role in precise terminal guidance and attacking of the missile. However, its special configuration and operational mode would induce the large spatial variances and serious range-azimuth coupling of echo data, which increases the difficulty of the precise image formation. In this paper, a fast time domain algorithm based on the ground elliptical polar coordinate is proposed to focus the missile-borne BFSAR data precisely. It represents the subimages on the ground elliptical polar grids to reduce the computational burden. The imaging geometry and signal model of the missile-borne BFSAR are firstly established. Then, the implementation of processing the missile-borne BFSAR data using the fast time domain algorithm is presented. Finally, simulation experiment is carried out to prove the correctness of the theoretical analysis and the validity of the proposed method.
机译:导弹的双孔前瞻性的合成孔径雷达(BFSAR)在精确的终端指导和攻击中起着重要作用。然而,其特殊的配置和操作模式将引起回波数据的大空间差异和严重的范围 - 方位角耦合,这增加了精确的图像形成的难度。在本文中,提出了一种基于地椭圆极坐标的快速时域算法,精确地聚焦导弹的BFSAR数据。它代表了地面椭圆极栅格上的子像象,以减少计算负担。首先建立了导弹BFSAR的成像几何和信号模型。然后,介绍了使用快速时域算法处​​理导弹的BFSAR数据的实现。最后,进行了仿真实验,以证明理论分析的正确性和所提出的方法的有效性。

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