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A Pedestrian Detection Scheme Using a Coherent Phase Difference Method Based on 2D Range-Doppler FMCW Radar

机译:基于二维距离多普勒FMCW雷达的相干相干法行人检测方案

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摘要

For an automotive pedestrian detection radar system, fast-ramp based 2D range-Doppler Frequency Modulated Continuous Wave (FMCW) radar is effective for distinguishing between moving targets and unwanted clutter. However, when a weak moving target such as a pedestrian exists together with strong clutter, the pedestrian may be masked by the side-lobe of the clutter even though they are notably separated in the Doppler dimension. To prevent this problem, one popular solution is the use of a windowing scheme with a weighting function. However, this method leads to a spread spectrum, so the pedestrian with weak signal power and slow Doppler may also be masked by the main-lobe of clutter. With a fast-ramp based FMCW radar, if the target is moving, the complex spectrum of the range- Fast Fourier Transform (FFT) is changed with a constant phase difference over ramps. In contrast, the clutter exhibits constant phase irrespective of the ramps. Based on this fact, in this paper we propose a pedestrian detection for highly cluttered environments using a coherent phase difference method. By detecting the coherent phase difference from the complex spectrum of the range-FFT, we first extract the range profile of the moving pedestrians. Then, through the Doppler FFT, we obtain the 2D range-Doppler map for only the pedestrian. To test the proposed detection scheme, we have developed a real-time data logging system with a 24 GHz FMCW transceiver. In laboratory tests, we verified that the signal processing results from the proposed method were much better than those expected from the conventional 2D FFT-based detection method.
机译:对于汽车行人检测雷达系统,基于快速斜坡的2D距离多普勒调频连续波(FMCW)雷达可有效区分运动目标和有害杂波。然而,当诸如行人之类的弱运动目标与强杂波一起存在时,即使行人在多普勒维度上明显分开,行人也可能被杂波的旁瓣遮盖。为了防止这个问题,一种流行的解决方案是使用具有加权功能的窗口方案。但是,这种方法会导致频谱扩展,因此信号功率弱且多普勒速度慢的行人也可能被杂波的主瓣遮盖。对于基于快速斜坡的FMCW雷达,如果目标正在移动,则快速傅立叶变换(FFT)范围的复杂频谱会随着斜坡上的恒定相位差而变化。相反,杂波呈现出恒定的相位,而与斜率无关。基于这一事实,在本文中,我们提出了使用相干相差法对高度杂乱的环境进行行人检测。通过从距离FFT的复频谱中检测相干相位差,我们首先提取了行人的距离分布。然后,通过多普勒FFT,我们仅获得行人的2D距离多普勒图。为了测试提出的检测方案,我们开发了带有24 GHz FMCW收发器的实时数据记录系统。在实验室测试中,我们验证了所提出方法的信号处理结果比常规基于2D FFT的检测方法所预期的要好得多。

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