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Efficient Simulation for Fixed-Receiver Bistatic SAR with Time and Frequency Synchronization Errors

机译:具有时间和频率同步误差的固定接收机双基地SAR的高效仿真

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摘要

Time and frequency synchronization is the key technique of bistatic synthetic aperture radar (BiSAR) system, and raw data simulation is an effective tool for verifying the time and frequency synchronization techniques. According to the two-dimensional (2-D) frequency spectrum of fixed-receiver BiSAR with time and frequency synchronization errors, a rapid raw data simulation method is proposed in this paper. Through 2-D inverse Stolt transform in 2-D frequency domain and phase compensation in Range-Doppler frequency domain, this method can realize two-dimensional spatial variation simulation for fixed-receiver BiSAR with time and frequency synchronization errors in a reasonable time consumption. Then the simulation efficiency of scene raw data can be significantly improved. Simulation results of point targets and extended scene are presented to validate the feasibility and efficiency of the proposed simulation method.
机译:时间和频率同步是双基地合成孔径雷达(BiSAR)系统的关键技术,原始数据仿真是验证时间和频率同步技术的有效工具。针对具有时间和频率同步误差的固定接收器BiSAR的二维(2-D)频谱,提出了一种快速的原始数据仿真方法。通过在二维频域中进行二维逆Stolt变换并在距离多普勒频域中进行相位补偿,该方法可以在合理的时间消耗下实现具有时间和频率同步误差的固定接收器BiSAR的二维空间变化仿真。这样可以大大提高场景原始数据的仿真效率。提出了点目标和扩展场景的仿真结果,验证了该仿真方法的可行性和有效性。

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