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A Synchronization Algorithm for Spaceborne/Stationary BiSAR Imaging Based on Contrast Optimization With Direct Signal From Radar Satellite

机译:基于对比度优化的雷达卫星直接信号星载/静止BiSAR成像同步算法

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摘要

This paper proposes a synchronization algorithm for bistatic synthetic aperture radar (BiSAR) imaging in a spaceborne/stationary configuration. In real bistatic systems, synchronization errors are generally introduced into the received data. Additionally, the lack of precise imaging parameters, such as the position of the transmitter and the accurate sampling time, could affect the imaging quality greatly. Fortunately, the image could be well focused by the proposed algorithm in the case of lack of the accurate position of a transmitter and the sampling time. First, a preprocessing step is employed to remove synchronization errors through matching an echo signal with a direct signal. Then, a modified chirp scaling factor containing an error phase term is constructed, and the accurate position of the transmitter and the sampling time can be acquired by the phase extraction of the direct signal and the searching method based on contrast optimization. After that, the corresponding imaging process can be implemented. Finally, the proposed algorithm is validated by the simulation and experimental results, where TerraSAR-X is used as the illuminator.
机译:本文提出了一种用于星载/静止配置的双基地合成孔径雷达(BiSAR)成像的同步算法。在实际的双基地系统中,通常将同步错误引入接收的数据中。此外,缺少精确的成像参数(例如变送器的位置和准确的采样时间)可能会极大地影响成像质量。幸运的是,在缺乏发射机的准确位置和采样时间的情况下,所提出的算法可以很好地聚焦图像。首先,采用预处理步骤,通过将回声信号与直接信号进行匹配来消除同步误差。然后,构造了一个包含误差相位项的改进线性调频比例因子,通过直接信号的相位提取和基于对比度优化的搜索方法,可以获得发射机的精确位置和采样时间。之后,可以实现相应的成像过程。最后,通过TerraSAR-X作为照明器的仿真和实验结果验证了所提算法的有效性。

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