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Imaging Formation Algorithm of the Ground and Space-Borne Hybrid BiSAR Based on Parameters Estimation from Direct Signal

机译:基于直接信号参数估计的地空混合BiSAR成像形成算法

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摘要

This paper proposes a novel image formation algorithm for the bistatic synthetic aperture radar (BiSAR) with the configuration of a noncooperative transmitter and a stationary receiver in which the traditional imaging algorithm failed because the necessary imaging parameters cannot be estimated from the limited information from the noncooperative data provider. In the new algorithm, the essential parameters for imaging, such as squint angle, Doppler centroid, and Doppler chirp-rate, will be estimated by full exploration of the recorded direct signal (direct signal is the echo from satellite to stationary receiver directly) from the transmitter. The Doppler chirp-rate is retrieved by modeling the peak phase of direct signal as a quadratic polynomial. The Doppler centroid frequency and the squint angle can be derived from the image contrast optimization. Then the range focusing, the range cell migration correction (RCMC), and the azimuth focusing are implemented by secondary range compression (SRC) and the range cell migration, respectively. At last, the proposed algorithm is validated by imaging of the BiSAR experiment configured with china YAOGAN 10 SAR as the transmitter and the receiver platform located on a building at a height of 109 m in Jiangsu province. The experiment image with geometric correction shows good accordance with local Google images.
机译:本文提出了一种具有非合作发射机和固定接收机配置的双基地合成孔径雷达(BiSAR)图像形成算法,该算法由于无法从非合作的有限信息中估算出必要的成像参数而使传统的成像算法失败。数据提供者。在新算法中,成像的基本参数,例如斜视角度,多普勒质心和多普勒线性调频率,将通过充分探查记录的直接信号(直接信号是从卫星到固定接收机的回波)来估计。发射器。通过将直接信号的峰值相位建模为二次多项式来检索多普勒线性调频率。多普勒质心频率和斜视角度可以从图像对比度优化中得出。然后分别通过二次距离压缩(SRC)和距离单元偏移实现距离聚焦,距离单元偏移校正(RCMC)和方位角聚焦。最后,通过对以中国YAOGAN 10 SAR为发射器和接收器平台的BiSAR实验成像进行了验证,该实验位于江苏省109 m高的建筑物上。经过几何校正的实验图像与本地Google图像显示出良好的一致性。

著录项

  • 来源
    《Mathematical Problems in Engineering》 |2014年第3期|294306.1-294306.11|共11页
  • 作者单位

    China Academy of Space Technology (CAST), Beijing 100094, China;

    Radar Research Lab, Beijing Institute of Technology, Beijing 100081, China;

    Radar Research Lab, Beijing Institute of Technology, Beijing 100081, China;

    Radar Research Lab, Beijing Institute of Technology, Beijing 100081, China;

    Radar Research Lab, Beijing Institute of Technology, Beijing 100081, China;

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