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Motion compensation for missile-borne frequency stepped chirp radar

机译:弹载频率步进chi雷达的运动补偿

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Motion compensation is a key problem for frequency stepped chirp radar (FSCR) in realizing synthetic high range resolution. In this paper, a novel velocity estimation algorithm based on the waveform entropy (WE) of the Doppler amplitude spectrum is developed for missile-borne FSCR, in order to compensate the target echo's additional phase resulting from the motion between the radar and the target. Without altering the conventional radar waveform, the new method can accurately estimate the radial velocity between the radar and the target and can be implemented on the in-service radars. Moreover, the method can be used for the scenario of multi-target with different velocities. It will be shown that the algorithm can effectively estimate the radial velocity and reconstruct the distorted HRRP successfully. In addition, the anti-noise performance of the proposed algorithm is well and the computation burden is acceptable for real time signal processing.
机译:运动补偿是频率步进线性调频雷达(FSCR)实现合成高范围分辨率的关键问题。本文针对导弹FSCR提出了一种基于多普勒振幅谱的波形熵(WE)的速度估计新算法,以补偿雷达与目标之间运动引起的目标回波的附加相位。在不改变常规雷达波形的情况下,该新方法可以准确估计雷达与目标之间的径向速度,并可以在使用中的雷达上实现。而且,该方法可以用于速度不同的多目标场景。结果表明,该算法可以有效地估计径向速度,并成功地重建失真的HRRP。另外,所提算法的抗噪性能良好,运​​算量大,可以接受实时信号处理。

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