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Parameters Estimation of Unresolved Targets with Stepped Frequency Train of LFM Pulses for Phased Array Radar: Range, Angle and Velocity

机译:相控阵雷达的LFM脉冲步进频率序列未解析目标的参数估计:范围,角度和速度

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When multiple targets are located in the same resolution cell, the performance of parameters estimation will get worse greatly. The stepped frequency train of linear frequency modulation (LFM) pulses can provide a high range resolution to separate multiple targets by forming the high range resolution profile (HRRP). But for the phased array radar, HRRP is not available because the range shift caused by targets' angles and velocities, which cannot be compensated in the case of unresolved targets. In this paper, the limitation of HRRP when used on the phased array radar is analyzed. To overcome this problem, the range-angle beamforming technique is used to separate the unresolved targets. However, the peaks of beamformer output still has the range shift caused by target motion. It is found that such range shift is nearly linear to the pulse repetition interval (PRI). So another stepped frequency LFM pulses train with different PRI is transmitted. By combining the target echoes of two pulse trains, the range shift is compensated well besides the ranges, angles and velocities of unresolved targets are estimated accurately. Several simulation results demonstrate the effectiveness of the proposed method.
机译:当多个目标位于同一分辨率的单元格中时,参数估计的性能将大大变差。线性频率调制(LFM)脉冲的步进频率序列可提供高范围分辨率,从而通过形成高范围分辨率轮廓(HRRP)来分离多个目标。但是对于相控阵雷达,HRRP不可用,因为由目标的角度和速度引起的距离偏移在无法分辨的目标情况下无法得到补偿。本文分析了HRRP在相控阵雷达上的局限性。为了克服这个问题,使用了射程角度波束形成技术来分离未分辨的目标。但是,波束形成器输出的峰值仍具有由目标运动引起的范围偏移。发现这种范围偏移几乎与脉冲重复间隔(PRI)成线性关系。因此,另一个具有不同PRI的步进频率LFM脉冲序列被发送。通过组合两个脉冲序列的目标回波,除了可以准确估计未分辨目标的范围,角度和速度外,还可以很好地补偿范围偏移。若干仿真结果证明了该方法的有效性。

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