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Pulsed LED Illumination for High Speed Imaging

机译:脉冲LED照明用于高速成像

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摘要

High speed imaging with decent image quality is difficult because the available exposure times are very short, which leads to the usage of a large aperture. Unfortunately, large aperture also decreases the depth resolution of the system, which reduces the quality of the image. Thus the source of illumination has to be able to output a high amount of energy in a very short time so that the aperture requirement can be relaxed. There are only a few Xenon flash lamps that fulfill the requirement of sub-microsecond pulses, so the natural choice would be to use lasers. However, when the target surface is rough, high degree of coherence causes black and white interference patterns known as speckle. The sensor might register irradiance values from zero to saturated state. Needless to say, this reduces drastically the quality of the image. There is variety of techniques for speckle removal, ranging from chaotic laser states to digital signal processing. In this paper we discuss an alternative, namely LEDs, for this kind of illumination. The authors have performed some experiments and theoretical modeling, and successfully demonstrated an illumination system based on LEDs that can output enough energy to enable imaging with pulse lengths of 100 ns.
机译:由于可用的曝光时间非常短,因此很难获得具有良好图像质量的高速成像,这会导致使用大光圈。不幸的是,大孔径也会降低系统的深度分辨率,从而降低图像质量。因此,照明源必须能够在非常短的时间内输出大量能量,以便可以放宽孔径要求。仅有少数满足亚微秒脉冲要求的氙气闪光灯,因此自然而然的选择是使用激光。但是,当目标表面粗糙时,高度的相干性会导致被称为斑点的黑白干涉图样。传感器可能会记录从零到饱和状态的辐照度值。不用说,这大大降低了图像的质量。有多种用于去除斑点的技术,范围从混沌激光状态到数字信号处理。在本文中,我们讨论了这种照明的替代方案,即LED。作者进行了一些实验和理论建模,并成功地演示了基于LED的照明系统,该系统可以输出足够的能量以实现100 ns脉冲长度的成像。

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