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Perceptually-motivated Real-time Temporal Upsampling of {3D} Content for High-refresh-rate Displays

机译:用于高刷新率显示的{3D}内容的感知动机实时时间上采样

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摘要

High-refresh-rate displays (e.\,g.,~120\,Hz) have recently become available on the consumer market and quickly gain on popularity. One of their aims is to reduce the perceived blur created by moving objects that are tracked by the human eye. However, an improvement is only achieved if the video stream is produced at the same high refresh rate (i.\,e.~120\,Hz). Some devices, such as LCD~TVs, solve this problem by converting low-refresh-rate content (i.\,e.~50\,Hz~PAL) into a higher temporal resolution (i.\,e.~200\,Hz) based on two-dimensional optical flow. In our approach, we will show how rendered three-dimensional images produced by recent graphics hardware can be up-sampled more efficiently resulting in higher quality at the same time. Our algorithm relies on several perceptual findings and preserves the naturalness of the original sequence. A psychophysical study validates our approach and illustrates that temporally up-sampled video streams are preferred over the standard low-rate input by the majority of users. We show that our solution improves task performance on high-refresh-rate displays.
机译:高刷新率显示器(例如,〜120Hz)最近已经在消费市场上可用,并迅速获得普及。他们的目标之一是减少人眼跟踪的移动物体所产生的感知模糊。但是,只有在以相同的高刷新率(即〜120Hz)产生视频流的情况下,才能实现改进。某些设备(例如LCD〜TV)通过将低刷新率内容(即〜50 \,Hz〜PAL)转换为更高的时间分辨率(即〜200 \\)来解决此问题。 (Hz),基于二维光流。在我们的方法中,我们将展示如何更有效地对最新图形硬件产生的渲染三维图像进行上采样,从而同时获得更高的质量。我们的算法依赖于几个感知结果,并保留了原始序列的自然性。一项心理物理研究验证了我们的方法,并说明了大多数用户首选在时间上较高采样的视频流而不是标准低速率输入。我们证明了我们的解决方案提高了高刷新率显示器上的任务性能。

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