Flare in Interference-Based Hyperspectral Cameras

Eden Sassoon, T. Treibitz, Y. Schechner
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引用次数: 3

Abstract

Stray light (flare) is formed inside cameras by internal reflections between optical elements. We point out a flare effect of significant magnitude and implication to snapshot hyperspectral imagers. Recent technologies enable placing interference-based filters on individual pixels in imaging sensors. These filters have narrow transmission bands around custom wavelengths and high transmission efficiency. Cameras using arrays of such filters are compact, robust and fast. However, as opposed to traditional broad-band filters, which often absorb unwanted light, narrow band-pass interference filters reflect non-transmitted light. This is a source of very significant flare which biases hyperspectral measurements. The bias in any pixel depends on spectral content in other pixels. We present a theoretical image formation model for this effect, and quantify it through simulations and experiments. In addition, we test deflaring of signals affected by such flare.
干涉型高光谱相机中的耀斑
杂散光(耀斑)是由相机内部光学元件之间的反射形成的。我们指出了耀斑效应的显著幅度和暗示的快照高光谱成像仪。最近的技术可以在成像传感器的单个像素上放置基于干涉的滤波器。这些滤波器在定制波长周围具有窄的传输带和高的传输效率。使用这种滤光片阵列的相机结构紧凑、坚固、快速。然而,与通常吸收不需要的光的传统宽带滤光片相反,窄带通干涉滤光片反射非透射光。这是一个非常重要的耀斑源,会使高光谱测量产生偏差。任何像素的偏置取决于其他像素的光谱含量。我们提出了这种效应的理论图像形成模型,并通过模拟和实验对其进行了量化。此外,我们还测试了受这种耀斑影响的信号的燃烧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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