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时空超分辨率

Space-time super-resolution.

作者信息

Shechtman E, Caspi Y, Irani M

出版信息

IEEE Trans Pattern Anal Mach Intell. 2005 Apr;27(4):531-545. doi: 10.1109/TPAMI.2005.85.

Abstract

We propose a method for constructing a video sequence of high space-time resolution by combining information from multiple low-resolution video sequences of the same dynamic scene. Super-resolution is performed simultaneously in time and in space. By "temporal super-resolution," we mean recovering rapid dynamic events that occur faster than regular frame-rate. Such dynamic events are not visible (or else are observed incorrectly) in any of the input sequences, even if these are played in "slow-motion." The spatial and temporal dimensions are very different in nature, yet are interrelated. This leads to interesting visual trade-offs in time and space and to new video applications. These include: 1) treatment of spatial artifacts (e.g., motion-blur) by increasing the temporal resolution and 2) combination of input sequences of different space-time resolutions (e.g., NTSC, PAL, and even high quality still images) to generate a high quality video sequence. We further analyze and compare characteristics of temporal super-resolution to those of spatial super-resolution. These include: How many video cameras are needed to obtain increased resolution? What is the upper bound on resolution improvement via super-resolution? What is the temporal analogue to the spatial "ringing" effect?

摘要

我们提出了一种通过组合来自同一动态场景的多个低分辨率视频序列的信息来构建高时空分辨率视频序列的方法。超分辨率在时间和空间上同时进行。通过“时间超分辨率”,我们指的是恢复比常规帧率更快发生的快速动态事件。即使以“慢动作”播放这些输入序列,此类动态事件在任何输入序列中都不可见(否则会被错误观察)。空间和时间维度本质上非常不同,但又相互关联。这导致了在时间和空间上有趣的视觉权衡以及新的视频应用。这些应用包括:1)通过提高时间分辨率来处理空间伪像(例如运动模糊),以及2)组合不同时空分辨率的输入序列(例如NTSC、PAL,甚至高质量静止图像)以生成高质量视频序列。我们进一步分析并比较了时间超分辨率与空间超分辨率的特征。这些特征包括:需要多少个摄像机才能获得更高的分辨率?通过超分辨率提高分辨率的上限是多少?空间“振铃”效应的时间类似物是什么?

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