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Three-Dimensional Object Profiling Using Highly Accurate FMCW Optical Ranging System

机译:使用高精度FMCW光学测距系统进行三维物体轮廓分析

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We have developed three-dimensional object profiling system using a highly accurate frequency-modulated continuous-wave optical ranging system. A DFB laser and a vertical-cavity surface-emitting laser (VCSEL) are used as the laser source and the optical frequency is swept by the injection current modulation with a symmetric triangular wave. The influence of nonlinearity in the optical frequency sweep is canceled by utilizing k-sampling technique. Since the optical frequency sweep range of a VCSEL is larger than that of a DFB laser, high spatial resolution and high ranging accuracy are achieved by using a VCSEL. The spatial resolution evaluated by the full-width at half-maximum (FWHM) is 460 mu m and the standard deviation of the ranging accuracy is sigma = 2.7 mu m when a VCSEL is used as the frequency-swept laser source, and the FWHM is 2.3 mm and sigma = 14.8 mu m when a DFB laser is used as the frequency-swept laser source. Accordingly, fine and clear object profiling of a coin and a printed circuit hoard is achieved by using a VCSEL as the frequency-swept laser source. Finally, we speed up the measurement time by increasing the repetition frequency of the injection current modulation and optimizing timing of the data acquisition, the galvano mirror scan and the fast Fourier transform analysis by taking account of the transient response of the galvano mirror, and the fastest measurement time of 22.6 s is achieved for 201 x 201 measurement points, which is four times faster than our previous results. We also discuss the effect of moving average filtering and median filtering to improve profiling quality.
机译:我们已经开发出了使用高精度频率调制连续波光学测距系统的三维物体轮廓分析系统。使用DFB激光器和垂直腔表面发射激光器(VCSEL)作为激光源,并且光的频率通过对称三角波的注入电流调制而被扫掠。利用k采样技术可以消除非线性对光学频率扫描的影响。由于VCSEL的光学扫频范围比DFB激光器大,因此通过使用VCSEL可以实现高空间分辨率和高测距精度。当将VCSEL用作扫频激光源时,通过半峰全宽(FWHM)评估的空间分辨率为460μm,测距精度的标准偏差为sigma = 2.7μm。当使用DFB激光器作为扫频激光源时,它为2.3 mm,sigma = 14.8μm。因此,通过使用VCSEL作为扫频激光源,可以实现硬币和印刷电路板的精细且清晰的物体轮廓。最后,我们通过增加注入电流调制的重复频率,并通过考虑电镜的瞬态响应以及201 x 201个测量点的最快测量时间为22.6 s,比我们之前的结果快四倍。我们还将讨论移动平均滤波和中值滤波对改善剖析质量的影响。

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