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Computational structured illumination

机译:计算结构照明

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We propose a computational structured illumination method for flexible object observation and measurement, which is a gradual extension of computational imaging. In the method, the impulse responses of illumination (IRIs) are observed in advance, and then the optical reflection for an arbitrary illumination pattern is generated by the superposition of the impulse responses. As a benefit of the method, illumination patterns can be easily designed and adjusted for different purposes without physical experiments after the IRI observation, and the desired information can be reconstructed with the same process as that used in conventional-structure illumination methods. A high-precision optical setup does not have to be maintained physically because it is virtualized in a computer. We experimentally demonstrated three-dimensional shape measurement and signal separation between direct-and internal-reflection components using the proposed method. (c) 2015 Optical Society of America
机译:我们提出了一种用于灵活的对象观察和测量的计算结构化照明方法,它是计算成像的逐步扩展。在该方法中,预先观察照明的脉冲响应(IRI),然后通过脉冲响应的叠加生成任意照明图案的光反射。作为该方法的优点,IRI观察后无需物理实验即可轻松设计和调整照明模式以实现不同目的,并且可以使用与常规结构照明方法相同的过程来重建所需信息。高精度光学设置无需物理维护,因为它已在计算机中虚拟化了。我们通过实验证明了使用提出的方法进行三维形状测量以及直接反射分量和内部反射分量之间的信号分离。 (c)2015年美国眼镜学会

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