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Motion parameters estimation of high-speed moving target for stepped frequency chirp signal

机译:步进频率线性调频信号的高速运动目标运动参数估计

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When the stepped frequency chirp signal (SFCS) is used by a radar for high-speed moving target imaging, motion compensation is the very crucial step because the time-bandwidth product is usually very large, serious motion induced phase error is thus suffered. In this paper, the impact of high-speed target motion on the synthetic range profile of SFCS is first analyzed. Then a new motion parameters estimation approach called extended cross-correlation inner frame (ECCIF) method is proposed, which can measure both the radial velocity and acceleration of a target by using the echoes of sub-pulses within a burst, thus accurate motion compensation can be performed. Simulations are conducted to verify the proposed method and very well focused range profile are obtained.
机译:当雷达将步进频率线性调频信号(SFCS)用于高速运动目标成像时,运动补偿是非常关键的一步,因为时间带宽乘积通常很大,因此会遭受严重的运动引起的相位误差。本文首先分析了高速目标运动对SFCS合成范围轮廓的影响。然后提出了一种新的运动参数估计方法,称为扩展互相关内框架(ECCIF)方法,该方法可以利用突发内子脉冲的回波来测量目标的径向速度和加速度,从而可以进行精确的运动补偿。被执行。进行仿真以验证所提出的方法并获得了很好的聚焦范围轮廓。

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