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FMCW radar system for detecting distance, relative velocity and azimuth of a target obstacle

机译:FMCW雷达系统,用于检测目标障碍物的距离,相对速度和方位角

摘要

Beat signals of respective receiver channels CH1 and CH2, produced by mixing their receiving signals with a transmission signal, are subjected to Fourier transformation to detect the frequency and phase of peak frequency components in both an ascending-section where the frequency of the transmission increases and a descending-section where the frequency of the transmission decreases. Based on peak frequency components derived from the same target, phase differences &Dgr;&phgr; u(i) and &Dgr;&phgr; d(j) between receiver channels CH1 and CH2 in the ascending- and descending-sections (steps 210-230). Relative relationship between the transmission signal and the receiving signal is judged based on the signs of the phase differences. Respective peak frequencies fu(i) and fd(j), detected as absolute values of frequency differences between the transmission signal and the receiving signal, are given sings in accordance with the judgement result. Then, the distance D and relative velocity V of the target are calculated (steps 240-260).
机译:通过将其接收信号CH1和CH2的接收信号与传输信号混合而产生的拍频信号经过傅立叶变换,以检测在传输频率增加和传输频率降低的下降部分。基于源自相同目标的峰值频率分量,相位差& u(i)和&Dgr;&phgr;在上升和下降部分中的接收机信道CH1和CH2之间的d(j)(步骤210-230)。基于相位差的符号来判断发送信号与接收信号之间的相对关系。根据判断结果,分别给出检测为发送信号和接收信号之间的频率差的绝对值的峰值频率fu(i)和fd(j)。然后,计算目标的距离D和相对速度V(步骤240-260)。

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