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A Dual-channel Fusion System of Visual and Infrared Images based on Color Transfer

机译:基于颜色传输的视觉和红外图像双通道融合系统

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The increasing availability and deployment of imaging sensors operating in multiple spectrums has led to a large research effort in image fusion, resulting in a plethora of pixel-level image fusion algorithms. However, most of these algorithms have gray or false color fusion results which are not adapt to human vision. Transfer color from a day-time reference image to get natural color fusion result is an effective way to solve this problem, but the computation cost of color transfer is expensive and can't meet the request of real-time image processing. We developed a dual-channel infrared and visual images fusion system based on TMS320DM642 digital signal processing chip. The system is divided into image acquisition and registration unit, image fusion processing unit, system control unit and image fusion result out-put unit. The image registration of dual-channel images is realized by combining hardware and software methods in the system. False color image fusion algorithm in RGB color space is used to get R-G fused image, then the system chooses a reference image to transfer color to the fusion result. A color lookup table based on statistical properties of images is proposed to solve the complexity computation problem in color transfer. The mapping calculation between the standard lookup table and the improved color lookup table is simple and only once for a fixed scene. The real-time fusion and natural colorization of infrared and visual images are realized by this system. The experimental result shows that the color-transferred images have a natural color perception to human eyes, and can highlight the targets effectively with clear background details. Human observers with this system will be able to interpret the image better and faster, thereby improving situational awareness and reducing target detection time.
机译:在多个频谱中运行的成像传感器的增加的可用性和部署导致了图像融合中的大型研究工作,从而导致多种像素级图像融合算法。然而,这些算法中的大多数具有灰色或假色彩融合结果,不适应人类视觉。从日间参考图像转移颜色以获得自然色彩融合结果是解决这个问题的有效方法,但是颜色传输的计算成本昂贵,无法满足实时图像处理的请求。我们开发了一种基于TMS320DM642数字信号处理芯片的双通道红外和视觉图像融合系统。该系统被分成图像采集和登记单元,图像融合处理单元,系统控制单元和图像融合结果输出单元。通过组合系统中的硬件和软件方法来实现双信道图像的图像登记。 RGB颜色空间中的假彩色图像融合算法用于获取R-G融合图像,然后系统选择参考图像以将颜色传输到融合结果。提出了一种基于图像统计特性的彩色查找表,以解决颜色传输中的复杂性计算问题。标准查找表和改进的颜色查找表之间的映射计算很简单,只有一个固定场景。通过该系统实现了红外和视觉图像的实时融合和自然色彩。实验结果表明,颜色转移的图像对人眼具有自然的颜色感知,并且可以用清晰的背景细节有效地突出显示目标。具有该系统的人类观察者将能够更好地解释图像,从而提高情境感知和减少目标检测时间。

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