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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Radon-Fourier Transform for Radar Target Detection (III): Optimality and Fast Implementations
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Radon-Fourier Transform for Radar Target Detection (III): Optimality and Fast Implementations

机译:用于雷达目标检测的Radon-Fourier变换(III):最优性和快速实现

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摘要

As a generalized Doppler filter bank processing, Radon-Fourier transform (RFT) has recently been proposed for long-time coherent integration detection of radar moving targets. The likelihood ratio test (LRT) detector is derived here for rectilinearly moving targets. It is found that the proposed LRT detector has the identical form as the existing RFT detector, which means that the RFT detector is an optimal detector for rectilinearly moving targets under the white Gaussian noise background. For the fast implementations of the RFT detector, instead of the joint 2-D trajectory searching and coherent integration in pulse-range domain, the 1-D fast Fourier transform (FFT)-based frequency bin RFT (FBRFT) method is proposed in the pulse-range frequency domain without loss of integration performance. Moreover, at the cost of a controllable performance loss, a suboptimal approach called subband RFT (SBRFT) is also proposed to reduce the storage memory. It is shown that not only the long-time coherent integration gain can be obtained via the proposed SBRFT, but also the computational complexity and memory cost can be reduced to the level of the conventional Doppler filter banks processing, e.g., moving target detection (MTD). Some numerical experiments are also provided to demonstrate the effectiveness of the proposed methods.
机译:作为一种通用的多普勒滤波器组处理,最近提出了Radon-Fourier变换(RFT)用于雷达移动目标的长期相干积分检测。在此导出了用于直线移动目标的似然比测试(LRT)检测器。发现所提出的LRT探测器具有与现有RFT探测器相同的形式,这意味着RFT探测器是在白高斯噪声背景下直线移动目标的最佳探测器。为了实现RFT检测器的快速实现,代替脉冲范围域中的联合2-D轨迹搜索和相干积分,在该方法中提出了基于1-D快速傅里叶变换(FFT)的频点RFT(FBRFT)方法。脉冲范围的频域而不会损失积分性能。此外,以可控制的性能损失为代价,还提出了一种称为子带RFT(SBRFT)的次优方法来减少存储内存。结果表明,不仅可以通过提出的SBRFT获得长时间的相干积分增益,而且可以将计算复杂度和存储成本降低到常规多普勒滤波器组处理的水平,例如运动目标检测(MTD) )。还提供了一些数值实验来证明所提出方法的有效性。

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