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感知优化图像渲染

Perceptually optimized image rendering.

作者信息

Laparra Valero, Berardino Alexander, Ballé Johannes, Simoncelli Eero P

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2017 Sep 1;34(9):1511-1525. doi: 10.1364/JOSAA.34.001511.

Abstract

We develop a framework for rendering photographic images by directly optimizing their perceptual similarity to the original visual scene. Specifically, over the set of all images that can be rendered on a given display, we minimize the normalized Laplacian pyramid distance (NLPD), a measure of perceptual dissimilarity that is derived from a simple model of the early stages of the human visual system. When rendering images acquired with a higher dynamic range than that of the display, we find that the optimization boosts the contrast of low-contrast features without introducing significant artifacts, yielding results of comparable visual quality to current state-of-the-art methods, but without manual intervention or parameter adjustment. We also demonstrate the effectiveness of the framework for a variety of other display constraints, including limitations on minimum luminance (black point), mean luminance (as a proxy for energy consumption), and quantized luminance levels (halftoning). We show that the method may generally be used to enhance details and contrast, and, in particular, can be used on images degraded by optical scattering (e.g., fog). Finally, we demonstrate the necessity of each of the NLPD components-an initial power function, a multiscale transform, and local contrast gain control-in achieving these results and we show that NLPD is competitive with the current state-of-the-art image quality metrics.

摘要

我们开发了一个通过直接优化与原始视觉场景的感知相似性来渲染照片图像的框架。具体来说,在给定显示器上可以渲染的所有图像集合上,我们最小化归一化拉普拉斯金字塔距离(NLPD),这是一种从人类视觉系统早期阶段的简单模型推导出来的感知差异度量。当渲染具有比显示器更高动态范围的图像时,我们发现这种优化提高了低对比度特征的对比度,而不会引入明显的伪像,产生的视觉质量结果与当前的最先进方法相当,但无需人工干预或参数调整。我们还展示了该框架在各种其他显示约束条件下的有效性,包括最小亮度(黑点)、平均亮度(作为能耗的代理)和量化亮度级别(半色调)的限制。我们表明,该方法通常可用于增强细节和对比度,特别是可用于因光学散射(如雾)而退化的图像。最后,我们证明了NLPD的每个组件——初始幂函数、多尺度变换和局部对比度增益控制——在实现这些结果中的必要性,并且我们表明NLPD与当前的最先进图像质量指标具有竞争力。

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