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Time-of-flight imaging based on resonant photoelastic modulation

机译:基于谐振光弹性调制的飞行时间成像

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摘要

A time-of-flight imaging system is proposed and its working principle demonstrated. To realize this system, a new device, a free-space optical mixer, is designed and fabricated. A scene is illuminated (flashed) with a megahertz-level amplitude-modulated light source, and the reflected light from the scene is collected by a receiver. The receiver consists of the free-space optical mixer, comprising a photoelastic modulator sandwiched between polarizers, placed in front of a standard complementary metal-oxide-semiconductor (CMOS) image sensor. This free-space optical mixer downconverts the megahertz-level amplitude modulation frequencies into the temporal bandwidth of the image sensor. A full-scale extension of the demonstrated system will be able to measure phases and Doppler shifts for the beat tones and use signal processing techniques to estimate the distance and velocity of each point in the illuminated scene with high accuracy. (C) 2019 Optical Society of America
机译:提出了一种飞行时间的成像系统,并证明了其工作原理。 为了实现该系统,设计和制造了一种新设备,自由空间光学混频器。 使用Megahertz级幅度调制光源照明(闪烁)场景,并且由接收器收集来自场景的反射光。 接收器包括自由空间光学混合器,包括夹在偏振器之间的光弹性调制器,放置在标准互补金属氧化物半导体(CMOS)图像传感器的前面。 这种自由空间光学混频器将Megahertz级幅度调制频率下转换为图像传感器的时间带宽。 所示系统的全规模延伸将能够测量搏动音调的阶段和多普勒班次,并使用信号处理技术以高精度估计照明场景中的每个点的距离和速度。 (c)2019年光学学会

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