Tominaga Shoji, Horiuchi Takahiko
Division of Information Sciences, Graduate School of Advanced Integration Science, Chiba University, Chiba, Japan.
J Opt Soc Am A Opt Image Sci Vis. 2012 Sep 1;29(9):1764-75. doi: 10.1364/JOSAA.29.001764.
This paper proposes a spectral imaging technology by synchronizing a programmable light source and a high-speed monochrome camera. The light source is capable of emitting arbitrary spectrum in high speed, so that the system has the advantage of capturing spectral images without using filters. The camera and the light source are controlled by a computer in order to capture image sequence synchronously with camera and illuminant control signals. First, we describe a projector for spectrally rendering a real scene as a fundamental usage of the spectral imaging system. Second, we describe the effective applications to (1) spectral reflectance recovery and (2) tristimulus imager. The performances of the proposed algorithms to solve the applied problems are examined in experiments in detail. We demonstrate potential applicability of the proposed spectral imaging technology.
本文提出了一种通过同步可编程光源和高速单色相机的光谱成像技术。该光源能够高速发射任意光谱,因此该系统具有无需使用滤光片即可捕获光谱图像的优势。相机和光源由计算机控制,以便与相机和照明控制信号同步捕获图像序列。首先,我们将描述一种用于对真实场景进行光谱渲染的投影仪,这是光谱成像系统的基本用途。其次,我们将描述在(1)光谱反射率恢复和(2)三刺激值成像仪方面的有效应用。在实验中详细研究了所提出算法解决这些应用问题的性能。我们展示了所提出的光谱成像技术的潜在适用性。