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WRFRFT-based coherent detection and parameter estimation of radar moving target with unknown entry/departure time

机译:基于WRFRFT的进入/离开时间未知的雷达移动目标的相干检测和参数估计

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A moving target may enter a radar coverage area unannounced and leave after an unspecified period, which implies that the target's entry time and departure time are unknown. In the absence of these time information, target detection and parameter estimation (DAPE) will be severely impacted. In this paper, we consider the coherent detection and parameters estimation problem for a radar moving target with unknown entry time and departure time (that is, the time when the target appears-in/leaves the radar detection field is unknown), involving across range cell (ARC) and Doppler spread (DS) effects within the observation period. A new algorithm, known as window Radon Fractional Fourier transform (WRFRFT) is proposed to detect and estimate the target's time parameters (i.e., entry time and departure time) and motion parameters (i.e., range, velocity and acceleration). The observation values of a maneuvering target are first intercepted and extracted by the window function and searching along the motion trajectory. Then these values are fractional Fourier transformed and well accumulated in the WRFRFT domain, where the DAPE of target could be accomplished thereafter. Experiments with simulated and real radar data sets prove its effectiveness. (C) 2019 Elsevier B.V. All rights reserved.
机译:运动的目标可能会未经通知进入雷达覆盖区域,并在未指定的时间段后离开,这意味着目标的进入时间和离开时间是未知的。在没有这些时间信息的情况下,目标检测和参数估计(DAPE)将受到严重影响。在本文中,我们考虑了具有未知进入时间和离开时间(即目标出现/离开雷达检测场的时间未知)的雷达移动目标的相干检测和参数估计问题,涉及跨范围观察期内的细胞(ARC)和多普勒扩散(DS)效应。提出了一种新的算法,称为窗Radon分数阶傅立叶变换(WRFRFT),用于检测和估计目标的时间参数(即进入时间和离开时间)和运动参数(即范围,速度和加速度)。首先通过窗函数截取并提取机动目标的观测值,然后沿着运动轨迹进行搜索。然后将这些值进行分数阶傅立叶变换,并在WRFRFT域中很好地积累,然后在其中完成目标的DAPE。模拟和真实雷达数据集的实验证明了其有效性。 (C)2019 Elsevier B.V.保留所有权利。

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