Low Complexity Detection Scheme for Fast Target in Randomized Stepped Frequency

K. Yoo, J. Chun, B. Choi
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Abstract

In randomized stepped frequency radar, two-dimensional matched filtering is performed to detect the target and estimate the range and radial velocity of target. However, if the region of target velocity to be considered is very wide, thus, target maneuvers very quickly, matched filtering should be performed to the corresponding wide velocity region. Then, grating lobe occurs periodically in the velocity axis, thereby causing a problem of finding a mainlobe in the grating lobe. In this study, we propose a two-stage low complexity detection algorithm for high-speed target. In the first stage, the coarse detection which determines the velocity region including mainlobe is performed. Then, fine detection is processed by performing 2D matched filtering in the reduced range-velocity region in the second stage. By dividing the target detection into two steps, computational complexity can be drastically reduced. The performance of the proposed technique is verified through simulation results.
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随机阶跃频率下快速目标的低复杂度检测方法
在随机阶跃频率雷达中,通过二维匹配滤波来检测目标并估计目标距离和径向速度。但是,如果要考虑的目标速度区域非常宽,因此目标机动速度非常快,则需要对相应的宽速度区域进行匹配滤波。然后,光栅瓣周期性地出现在速度轴上,从而导致在光栅瓣中寻找主瓣的问题。在本研究中,我们提出了一种两阶段的低复杂度高速目标检测算法。在第一阶段,进行粗检测,确定包含主瓣的速度区域。然后,在第二阶段对缩小的距离-速度区域进行二维匹配滤波,进行精细检测。通过将目标检测分为两步,可以大大降低计算复杂度。仿真结果验证了该方法的有效性。
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