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首页> 外文期刊>Applied optics >NOISE REDUCTION IN ADAPTIVE-OPTICS IMAGERY WITH THE USE OF SUPPORT CONSTRAINTS
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NOISE REDUCTION IN ADAPTIVE-OPTICS IMAGERY WITH THE USE OF SUPPORT CONSTRAINTS

机译:通过使用支持约束减少自适应光学影像中的噪声

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摘要

The use of support constraints for noise reduction in images obtained with telescopes that use adaptive optics for atmospheric correction is discussed. Noise covariances are derived for these type of data, including the effects of photon noise and CCD read noise. The effectiveness of support constraints in achieving noise reduction is discussed in terms of these noise properties and in terms of the types of algorithms used to enforce the support constraint. Both a convex-projections and a cost-function minimization algorithm are used to enforce the support constraints, and it is shown with the use of computer simulations and field data that the cost-function algorithm results in artifacts in the reconstructions. The convex-projections algorithms produced mean-square-error decreases in the image domain of approximately 10% for high light levels but essentially no error decreases for low light levels. We emphasize images that are well resolved by the telescope and adaptive-optics system. [References: 21]
机译:讨论了使用支持约束来减少使用自适应光学系统进行大气校正的望远镜获得的图像中的噪声。针对这些类型的数据得出噪声协方差,包括光子噪声和CCD读取噪声的影响。根据这些噪声属性以及用于实施支撑约束的算法类型,讨论了支撑约束在实现降噪方面的有效性。凸投影和成本函数最小化算法都用于强制支持约束,并且通过计算机模拟和现场数据的使用表明,成本函数算法会导致重建过程中出现伪像。对于高光水平,凸投影算法在图像域中产生的均方误差减小了约10%,但对于低光水平,基本上没有误差减小。我们强调望远镜和自适应光学系统可以很好地分辨图像。 [参考:21]

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