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A Novel Interferometric Millimeter Wave Doppler Radar Architecture

机译:一种新型干涉式毫米波多普勒雷达架构

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A universal, mixerless millimeter wave (mmW) Doppler radar architecture consisting of simply a Continuous Wave (CW) source and an intensity detector based on optical interferometry technique has been assembled. The phase information is obtained by using an oscillating mirror in the reference arm, similar to that used by the FTIR (Fourier Transform Infrared spectroscopy) technique. The reference mirror oscillates at a frequency that is higher than twice the Doppler frequency of the object. Rigorous mathematical formulas have been derived to solve for both the amplitude and the phase of the Doppler signal, by using the Low-Frequency-Band (LFB) and High-Frequency-Band (HFB) signals. The Doppler frequency signature of a moving object can be obtained from the Fourier transform of the phase. A prototype at 94 GHz was built and tested using a ball pendulum target moving over a full-swing distance much smaller than a wavelength. Both the measured amplitude and phase have been shown to agree well with the experimental parameters. The interferometric Doppler radar architecture is universal and can be extended to THz without significant change of components.
机译:组装了一种通用,混合器毫米波(MMW)多普勒雷达架构,包括仅基于光学干涉技术的连续波(CW)源和强度检测器。通过使用参考臂中的振荡镜,类似于FTIR(傅里叶变换红外光谱)技术的振荡镜,获得相位信息。参考镜以高于对象的多普勒频率的两倍的频率振荡。通过使用低频带(LFB)和高频带(HFB)信号,已经导出了对多普勒信号的幅度和相位的幅度和相位来解决严格的数学公式。移动物体的多普勒频率特征可以从阶段的傅立叶变换获得。使用164GHz的原型,使用球形摆锤在全面距离小于波长的全面距离上进行测试。已经显示出测量的幅度和相位吻合良好的实验参数。干涉量多普勒雷达架构是通用的,可以扩展到THz,而无需显着变化。

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