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Diffuse Imaging: Creating Optical Images With Unfocused Time-Resolved Illumination and Sensing

机译:漫射成像:创建具有未聚焦的时间分辨照明和传感的光学图像

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Conventional imaging uses steady-state illumination and light sensing with focusing optics; variations of the light field with time are not exploited. We develop a signal processing framework for estimating the reflectance of a Lambertian planar surface in a known position using omnidirectional, time-varying illumination and unfocused, time-resolved sensing in place of traditional optical elements such as lenses and mirrors. Our model associates time sampling of the intensity of light incident at each sensor with a linear functional of . The discrete-time samples are processed to obtain -regularized estimates of . Improving on previous work, using nonimpulsive, bandlimited light sources instead of impulsive illumination significantly improves signal-to-noise ratio (SNR) and reconstruction quality. Our simulations suggest that practical diffuse imaging applications may be realized with commercially-available temporal light intensity modulators and sensors used in standard optical communication systems.
机译:常规成像使用稳态照明和带有聚焦光学器件的光感应;没有利用光场随时间的变化。我们开发了一种信号处理框架,用于使用全方位,随时间变化的照明和未聚焦,时间分辨的感应来代替已知的光学元件(例如镜头和镜子),以估计朗伯平面在已知位置的反射率。我们的模型将每个传感器入射光强度的时间采样与的线性函数相关联。处理离散时间样本以获得的正规化估计。改进以前的工作,使用非脉冲,带限光源而不是脉冲照明,可以显着提高信噪比(SNR)和重建质量。我们的模拟表明,实际的漫射成像应用可以使用标准光学通信系统中使用的市售时间光强度调制器和传感器来实现。

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