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High-Resolution Squinted SAR Imaging Algorithm Applied in the Near-Field Environment

机译:应用在近场环境中的高分辨率斜视SAR成像算法

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In the squinted synthetic aperture radar (SAR) imaging of the near-field environment, range-dependent characteristic of squint angle cannot be ignored, which causes azimuth-dependent range cell migration (RCM) after linear range walk correction (LRWC). In this study, an efficient SAR imaging algorithm applied in the near-field environment is proposed. In the processing of the range focusing, LRWC is firstly used to remove the linear RCM. Then, the residual LRCM is expanded into azimuth-invariant and azimuth-variant terms in consideration of the residual LRCM of azimuth-dependent. Range cell migration azimuth scaling (RCMAS) is designed to remove the azimuth-variant term before secondary range compression (SRC) and range compression (RC). In the azimuth focusing, azimuth distortion compensation (ADC) is performed to compensate the azimuth distortion, following which azimuth nonlinear chirp scaling (ANCS) is applied to equalize the frequency modulation (FM) rate for azimuth compression (AC). The simulated results show that more accurate and improved imaging result can be obtained with the proposed algorithm.
机译:在近场环境的斜视的合成孔径雷达(SAR)成像中,斜视角的范围依赖性特性不能忽略,这导致线性范围步行校正(LRWC)之后的方位依赖的范围细胞迁移(RCM)。在该研究中,提出了一种在近场环境中应用的高效SAR成像算法。在加工范围聚焦的过程中,首先用于去除线性RCM的LRWC。然后,考虑到依赖的方位的残留LRCM,将残留的LRCM扩展到方位角不变和方位变体术语中。范围单元迁移方位角缩放(RCMAS)被设计为在二级范围压缩(SRC)和范围压缩(RC)之前去除方位变体术语。在方位角聚焦中,执行方位角失真补偿(ADC)以补偿方位角失真,之后应用方位角非线性啁啾缩放(ANC)以均衡方位角压缩(AC)的频率调制(FM)速率。模拟结果表明,通过所提出的算法可以获得更准确和改善的成像结果。

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