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Statistical analysis for coherent optical-imaging systems with registration errors

机译:具有配准误差的相干光学成像系统的统计分析

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摘要

Coherent images of diffuse objects exhibit two fundamental noise artifacts: speckle noise that is due to the use of coherent illumination and photon noise that is due to fundamental limitations in the detection of electromagnetic radiation. Because of the nature of speckle noise, slight changes in the source-scene-sensor geometry can give rise to independent speckle-noise realizations, which can, in turn, be used to form ensemble averages and reduce the speckle-induced degradations. The very nature of this procedure, however, can re-suit in a collection of images that are not registered relative to one another, and new distortions, unrelated to the speckle effect, will be seen in the resulting images. Our goal, therefore, is to present a statistical analysis of coherent optical-imaging systems that collect and average independent, photon-limited speckle images with registration errors and to use this analysis in the derivation of mean-square-error and signal-t0-noise ratio expressions that are applicable for both image-domain and spatial-frequency-domain analyses. # 1997 Optical Society of America [S0740-3232(97)02206-0]
机译:散射物体的相干图像表现出两个基本的噪声伪像:由于使用了相干照明而产生的斑点噪声,以及由于检测电磁辐射而受到基本限制而引起的光子噪声。由于斑点噪声的性质,源场景传感器几何形状的细微变化会引起独立的斑点噪声实现,进而可用于形成总体平均值并减少斑点引起的退化。但是,此过程的本质是可以重新适应一组彼此之间未配准的图像,并且在生成的图像中将看到与斑点效应无关的新失真。因此,我们的目标是对相干光学成像系统进行统计分析,以收集和平均具有配准误差的光子受限散斑独立图像,并将其用于均方误差和信号t0-的推导。适用于图像域和空间频域分析的噪声比表达式。 #1997美国光学学会[S0740-3232(97)02206-0]

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