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A compact rangefinder based on self-mixing interferometry

机译:基于自混合干涉仪的紧凑型测距仪

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This paper presents the development of an optical rangefinder based on self-mixing interferometry. The instrument measures the absolute distance from a remote target, without contact and respecting the Class I safety. A variation of the laser diode bias current origins a modulation of the wavelength and then, due to the phase shift along the channel path, the presence of a target generates interferometric fringes. The electrical frequency of the fringes signal is proportional to the target distance. The realized device consists in analog and digital circuits. The analog circuits drive the laser diode, detect the interferometric signal and filter it. A Digital Signal Processor is needed to acquire the fringes signal and, by extracting its frequency, evaluate the absolute distance. The developed rangefinder allows spatial resolution better than 100 μm over a range from 5 cm to 2 m.
机译:本文介绍了基于自混合干涉仪的光学测距仪的发展。仪器可测量距远程目标的绝对距离,而无需接触并遵守I类安全性。激光二极管偏置电流的变化引起波长的调制,然后由于沿通道路径的相移,目标的存在会产生干涉条纹。条纹信号的电频率与目标距离成正比。实现的设备包括模拟和数字电路。模拟电路驱动激光二极管,检测干涉信号并对其进行滤波。需要一个数字信号处理器来获取条纹信号,并通过提取其频率来评估绝对距离。研发的测距仪可在5 cm至2 m的范围内实现优于100μm的空间分辨率。

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