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Effectiveness of Moving Signal-Average Method in K Band FMCW Radar for Short-Range Vehicle Detection Using Antennas With Narrow Beam Widths

机译:K波段FMCW雷达中移动信号平均方法对窄波束天线的短距离车辆检测的有效性

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摘要

This paper presents the implementation and examination of moving signal-average methods (MSAMs) to improve the defects of frequency-modulated continuous wave (FMCW) radar in detecting short-range vehicles which may cause false target detection. The MSAM may smooth out the short-term signal fluctuations in the system responses of received data in time series. These signal fluctuations may appear when the antenna radiation has a narrow beam width to illuminate only a part of sophisticated vehicle structures. In this examination, the defect phenomena were first investigated by employing the electromagnetic backscattering simulation. Afterward, experimental measurements were performed by implementing MSAM in a radar system for side-looking vehicle detection. The experimental FMCW radar operates at 24.125GHz with 250MHz bandwidth and implements a linear frequency modulation for transmitter/receiver with 2mW for transmitter power. The output responses to determine the detection are based on the peak value distribution of signals after being processed by the fast Fourier transform and MSAM. Both numerical simulations and experiments have demonstrated the validity of MSAM in the signal treatment to detect the vehicles within the coverage range.
机译:本文介绍了移动信号平均方法(MSAM)的实现和检查,以改善调频连续波(FMCW)雷达在检测可能导致错误目标检测的短程车辆方面的缺陷。 MSAM可以按时间序列平滑接收信号的系统响应中的短期信号波动。当天线辐射的波束宽度很窄时,可能会出现这些信号波动,从而仅照亮部分复杂的车辆结构。在这项检查中,首先通过电磁反向散射仿真研究了缺陷现象。之后,通过在雷达系统中实施MSAM进行侧视车辆检测来进行实验测量。实验性FMCW雷达工作在24.125GHz,带宽为250MHz,并为发射器/接收器实现了线性频率调制,发射功率为2mW。确定检测结果的输出响应基于经过快速傅里叶变换和MSAM处理后的信号峰值分布。数值模拟和实验都证明了MSAM在信号处理中检测覆盖范围内车辆的有效性。

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