通过振动显示器增强分辨率

Floraine Berthouzoz, Raanan Fattal
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引用次数: 45

摘要

我们提出了一种利用人眼视觉系统中的视网膜整合时间来提高显示分辨率的方法。给定分辨率高于显示分辨率的输入图像,我们计算与显示器的本机分辨率匹配的几个图像。然后,我们以在高刷新率显示器上重复的顺序呈现这些低分辨率图像。序列的周期低于视网膜整合时间,因此眼睛暂时整合图像并将它们视为一个图像。为了提高分辨率,我们将小振幅振动应用于显示面板,并使其与屏幕刷新周期同步。我们推导了感知图像模型,并使用它来计算经过优化的低分辨率图像,以提高感知图像的表观分辨率。这种方法无需在屏幕上移动显示的内容即可实现分辨率增强,因此提供了比现有方法更实用的解决方案。此外,我们使用我们的模型来确定这种显示系统可实现的分辨率增强量的限制。在本分析中,我们在我们的显示和超分辨率技术之间建立了正式的联系,并发现这两种方法都有相同的局限性,但这种局限性源于不同的来源。最后,我们详细描述了我们的显示系统的一个简单的物理实现,并演示了它的能力,以两倍的分辨率匹配屏幕上可显示的大部分频谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resolution enhancement by vibrating displays
We present a method that makes use of the retinal integration time in the human visual system for increasing the resolution of displays. Given an input image with a resolution higher than the display resolution, we compute several images that match the display's native resolution. We then render these low-resolution images in a sequence that repeats itself on a high refresh-rate display. The period of the sequence falls below the retinal integration time and therefore the eye integrates the images temporally and perceives them as one image. In order to achieve resolution enhancement we apply small-amplitude vibrations to the display panel and synchronize them with the screen refresh cycles. We derive the perceived image model and use it to compute the low-resolution images that are optimized to enhance the apparent resolution of the perceived image. This approach achieves resolution enhancement without having to move the displayed content across the screen and hence offers a more practical solution than existing approaches. Moreover, we use our model to establish limitations on the amount of resolution enhancement achievable by such display systems. In this analysis we draw a formal connection between our display and super-resolution techniques and find that both methods share the same limitation, yet this limitation stems from different sources. Finally, we describe in detail a simple physical realization of our display system and demonstrate its ability to match most of the spectrum displayable on a screen with twice the resolution.
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