Object profiling using FMCW reflectometry with asymmetric method

R. K. Ula, K. Iiyama
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Abstract

The FMCW reflectometry is a high-resolution ranging system using an optical frequency swept laser source. The beat spectrum consists in the interference signal will analysis by FFT analysis. At the asymmetric method, the timing of the data acquisition called raising period is different with the timing of FFT analysis called the falling period. The exact percentage of both will determine quality profiling and measurement time. In our experiment, we compare the measurement time between 350 and 600 points of the number of the acquired data with the theoretical measurement time. The measurement time of theoretical theory is closer with the measurement time using 350 points of the number of the acquired data. This study proved that the clear profile is generated using the repetition frequency of the injection current modulation 1.8 kHz with the condition is the raising period (Tr = 155 μ) is shorter than the falling period (Tf = 400) at the raising mode in 22.7 sec by using 350 points of the number of the acquired data.
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非对称FMCW反射法的目标轮廓分析
FMCW反射计是一种使用光扫频激光源的高分辨率测距系统。拍谱由干扰信号组成,将通过FFT分析进行分析。在非对称方法中,数据采集的时间(称为上升周期)与FFT分析的时间(称为下降周期)不同。两者的精确百分比将决定质量分析和测量时间。在我们的实验中,我们将采集数据数量的350点到600点之间的测量时间与理论测量时间进行了比较。理论理论的测量时间与采集数据数的350个点的测量时间更接近。利用采集到的数据中的350个点,以1.8 kHz的注入电流调制重复频率,在上升模式下,在22.7秒内上升周期(Tr = 155 μ)小于下降周期(Tf = 400)的条件下,得到了清晰的轮廓。
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