论文标题

光谱扩散:无镜头快照高光谱成像,具有光谱滤波器阵列

Spectral DiffuserCam: lensless snapshot hyperspectral imaging with a spectral filter array

论文作者

Monakhova, Kristina, Yanny, Kyrollos, Aggarwal, Neerja, Waller, Laura

论文摘要

高光谱成像对于从医学诊断到农业作物监测的应用非常有用;但是,传统的扫描高光谱成像仪非常缓慢且昂贵,对于广泛采用而言。快照技术存在,但通常仅限于笨重的台式设置或具有低时空传播分辨率。在本文中,我们提出了一个新颖,紧凑且廉价的计算摄像头,用于快照高光谱成像。我们的系统由直接放置在图像传感器上的瓷砖光谱滤波器阵列和一个靠近传感器的扩散器组成。世界上的每个点都映射到频谱滤波器阵列上唯一的伪随机模式,该图案编码了多路复用的时空光谱信息。通过解决稀疏性约束的反问题,我们以亚柔和像素分辨率恢复了高光谱体积。我们的高光谱成像框架是灵活的,可以使用连续或不连续的光谱过滤器进行设计,可以为给定的应用选择。我们为系统设计提供理论,展示原型设备,并以高时空光谱分辨率提供实验结果。

Hyperspectral imaging is useful for applications ranging from medical diagnostics to agricultural crop monitoring; however, traditional scanning hyperspectral imagers are prohibitively slow and expensive for widespread adoption. Snapshot techniques exist but are often confined to bulky benchtop setups or have low spatio-spectral resolution. In this paper, we propose a novel, compact, and inexpensive computational camera for snapshot hyperspectral imaging. Our system consists of a tiled spectral filter array placed directly on the image sensor and a diffuser placed close to the sensor. Each point in the world maps to a unique pseudorandom pattern on the spectral filter array, which encodes multiplexed spatio-spectral information. By solving a sparsity-constrained inverse problem, we recover the hyperspectral volume with sub-super-pixel resolution. Our hyperspectral imaging framework is flexible and can be designed with contiguous or non-contiguous spectral filters that can be chosen for a given application. We provide theory for system design, demonstrate a prototype device, and present experimental results with high spatio-spectral resolution.

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