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Low Light Level Color Night Vision Technology Study on Triple-band

机译:三波段微光彩色夜视技术研究

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摘要

Single-channel triple-band color night vision system is able to gain low-light color imagery. The core design idea of one-channel triple-band color night vision system is increasing a scanner than traditional low-light night vision system in the front of the image intensifier. The scanner is consisted of several filters which is used for dividing the emitted light or reflected light of the aim into three parts, R, G and B. Each part is taken a frame image respectively and then fused three frames into color imagery by Color Mapping Guidelines. The addition of filters makes the SNR of each frame image decreases, it means that images detail loss and gray value is low. To overcome this difficult, on the basis of three frame images fusion, a frame image of all band is added to fusion. Experimental results show that fused image which is fused by R, G, B and all band improve image brightness and detail information obviously through calculating the variance and entropy. This fused method is more conducive to the human eye.
机译:单通道三波段彩色夜视系统能够获得低光彩色图像。单通道三波段彩色夜视系统的核心设计思想是,在图像增强器前面,与传统的微光夜视系统相比,扫描仪的数量有所增加。扫描仪由几个滤光片组成,用于将目标的发射光或反射光分为R,G和B三个部分。每个部分分别获取一帧图像,然后通过“色彩映射”将三帧融合为彩色图像准则。滤波器的添加使每帧图像的SNR降低,这意味着图像的细节损失和灰度值较低。为了克服这一困难,在三个帧图像融合的基础上,将所有频带的帧图像添加到融合中。实验结果表明,通过计算方差和熵,将R,G,B和全波段融合后的融合图像明显改善了图像的亮度和细节信息。这种融合的方法更有利于人眼。

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