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Enhancing images with intensity-dependent spread functions

机译:使用强度相关的扩展功能增强图像

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Abstract: The theory of Intensity-Dependent Spread functions (IDS) is a model of the human visual system. The motivation behind IDS is to balance resolution and reliability. The system does this, but it also predicts many phenomena in human vision. IDS is a nonlinear, adaptive system that enhances edges, nonlinearly compresses dynamic ranges and automatically adjusts to local variations in intensity. It has a single free parameter, uses only additions in its on-line calculations and can be performed on a parallel processor. Another property of the system is that for inputs with only two intensities, e.g. disks, square waves and step edges, the output reduces exactly to one plus the convolution of the input with a bandpass filter whose passband is determined by the two intensities. For a Gaussian spread function the transfer function becomes the Difference-of-Gaussians (DoG) filter but the bandwidth set automatically by the input intensities. This paper demonstrates how IDS can be used for digital image enhancement. There is an artificial image that illustrates the characteristics of IDS processing and shows how the theoretical results translate into visual effects. There are also several realistic scenes that have been enhanced by IDS.!10
机译:摘要:强度依赖扩散函数(IDS)理论是人类视觉系统的模型。 IDS的动机是平衡分辨率和可靠性。该系统可以做到这一点,但它也可以预测人类视觉中的许多现象。 IDS是一种非线性的自适应系统,可增强边缘,非线性压缩动态范围并自动调整以适应局部强度变化。它具有单个自由参数,在其在线计算中仅使用加法,并且可以在并行处理器上执行。系统的另一个特性是对于只有两个强度的输入,例如磁盘,方波和阶跃边缘,输出精确地减为一个,再加上带通滤波器的输入卷积,该滤波器的通带由两个强度决定。对于高斯扩展函数,传递函数变为高斯差分(DoG)滤波器,但带宽由输入强度自动设置。本文演示了如何将IDS用于数字图像增强。有一张人造图像可以说明IDS处理的特征,并显示理论结果如何转化为视觉效果。 IDS还增强了一些逼真的场景。!10

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