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首页> 外文期刊>IEEE Transactions on Pattern Analysis and Machine Intelligence >Efficient Space-Time Sampling with Pixel-Wise Coded Exposure for High-Speed Imaging
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Efficient Space-Time Sampling with Pixel-Wise Coded Exposure for High-Speed Imaging

机译:像素编码编码曝光的高效空时采样,用于高速成像

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摘要

Cameras face a fundamental trade-off between spatial and temporal resolution. Digital still cameras can capture images with high spatial resolution, but most high-speed video cameras have relatively low spatial resolution. It is hard to overcome this trade-off without incurring a significant increase in hardware costs. In this paper, we propose techniques for sampling, representing, and reconstructing the space-time volume to overcome this trade-off. Our approach has two important distinctions compared to previous works: 1) We achieve sparse representation of videos by learning an overcomplete dictionary on video patches, and 2) we adhere to practical hardware constraints on sampling schemes imposed by architectures of current image sensors, which means that our sampling function can be implemented on CMOS image sensors with modified control units in the future. We evaluate components of our approach, sampling function and sparse representation, by comparing them to several existing approaches. We also implement a prototype imaging system with pixel-wise coded exposure control using a liquid crystal on silicon device. System characteristics such as field of view and modulation transfer function are evaluated for our imaging system. Both simulations and experiments on a wide range of scenes show that our method can effectively reconstruct a video from a single coded image while maintaining high spatial resolution.
机译:相机面临空间和时间分辨率之间的根本权衡。数码相机可以捕获具有高空间分辨率的图像,但是大多数高速摄像机具有相对较低的空间分辨率。在不大幅增加硬件成本的情况下很难克服这种折衷。在本文中,我们提出了用于采样,表示和重构时空量的技术,以克服这种折衷。与以前的作品相比,我们的方法有两个重要区别:1)我们通过学习视频补丁上的过完整字典来实现视频的稀疏表示; 2)我们对当前图像传感器的架构所施加的采样方案遵守实际的硬件约束,这意味着我们的采样功能将来可以在具有改进控制单元的CMOS图像传感器上实现。通过与几种现有方法进行比较,我们评估了方法的组成部分,采样函数和稀疏表示。我们还实现了一种原型成像系统,该系统使用硅器件上的液晶显示器进行了像素编码的曝光控制。对我们的成像系统评估了系统特性,例如视野和调制传递函数。在各种场景上的仿真和实验都表明,我们的方法可以在保持高空间分辨率的同时,从单个编码图像中有效地重建视频。

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