Range and Doppler estimation of multiple moving targets for pulsed Doppler radars with CFAR detector at very low SNRs

M. Z. Butt, S. T. Gul
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Abstract

Pulsed wave radars are very promising due to their numerous attractive features over traditional continuous wave radars. This paper presents the range and doppler estimation of moving targets using pulsed doppler radars. Various techniques have been implemented to correctly estimate the range and radial velocity of the moving target. Moving Target Indicator (MTI) is widely accepted as computationally efficient method to estimate the range and Doppler of the moving targets. But the Doppler estimation using MTI in case of multiple and very fast moving targets is not an accurate method. Adaptive CFAR thresholding is another technique that improves the performance of the system at very low SNR. We employ an FFT based signal processor with CFAR detector to produce unbiased estimates of the ranges and radial velocities of the multiple moving targets. Results show significant Improvements over other implemented techniques even at very low SNRs.
低信噪比CFAR脉冲多普勒雷达多运动目标距离和多普勒估计
脉冲波雷达与传统的连续波雷达相比具有许多吸引人的特点,因此具有很大的发展前景。本文介绍了脉冲多普勒雷达对运动目标的距离和多普勒估计。为了正确估计运动目标的距离和径向速度,采用了各种技术。运动目标指示器(MTI)作为一种计算效率高的估计运动目标距离和多普勒的方法被广泛接受。但是在多目标快速运动的情况下,用MTI进行多普勒估计并不是一种准确的方法。自适应CFAR阈值是另一种在极低信噪比下提高系统性能的技术。我们采用基于FFT的信号处理器和CFAR检测器对多个运动目标的距离和径向速度进行无偏估计。结果显示,即使在非常低的信噪比下,也比其他实现的技术有显著的改进。
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