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基于混合相机系统的内容自适应高分辨率高光谱视频采集。

Content-adaptive high-resolution hyperspectral video acquisition with a hybrid camera system.

出版信息

Opt Lett. 2014 Feb 15;39(4):937-40. doi: 10.1364/OL.39.000937.

Abstract

We present a hybrid camera system that combines optical designs with computational processing to achieve content-adaptive high-resolution hyperspectral video acquisition. In particular, we record two video streams: one high-spatial resolution RGB video and one low-spatial resolution hyperspectral video in which the recorded points are dynamically selected using a spatial light modulator (SLM). Then through video-frame registration and a spatio-temporal spreading of the co-located spectral/RGB information, video with high spatial and spectral resolution is produced. The sampling patterns on the SLM are generated on-the-fly according to the scene content, which fully exploits the self-adaptivity of the hybrid camera system. With an experimental prototype, we demonstrate significantly improved accuracy and efficiency as compared to the state-of-the-art.

摘要

我们提出了一种混合相机系统,该系统将光学设计与计算处理相结合,实现了内容自适应的高分辨率高光谱视频采集。具体来说,我们记录了两个视频流:一个高空间分辨率的 RGB 视频和一个低空间分辨率的高光谱视频,其中使用空间光调制器 (SLM) 动态选择记录点。然后,通过视频帧配准和共定位光谱/RGB 信息的时空扩展,生成具有高空间和光谱分辨率的视频。SLM 上的采样模式根据场景内容实时生成,充分利用了混合相机系统的自适应能力。通过实验原型,与现有技术相比,我们证明了显著提高的准确性和效率。

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