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A technique for generating natural colour images from false colour composite images

机译:从假彩色合成图像生成自然彩色图像的技术

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Colour is widely used in remote sensing work. In many instances, the use of colour conveys additional information both visually and scientifically. Remote sensing satellites view the earth in different spectral bands, viz. near infrared (NIR), red, green, and blue bands, in a conventional multispectral imaging system. In the absence of a blue channel, colour images can be generated using near infrared, red, and green bands in what is known as a false colour composite (FCC) and does not look natural, like the image we see with the naked eye. For a trained interpreter, this does not pose any problems. However, when the intended use is a fly-through of a draped terrain, visual interpretation, or a display, meant for the non-remote sensing professional, this becomes a handicap. To overcome this, there is a requirement to generate natural colour composites (NCC) from the given false colour composite, which demands the simulation of a blue band to be combined with green and red bands. This paper describes a unique method of generating a blue band to form natural colour images from a given false colour image set. We use a spectral transformation method to establish a relationship between the false colour and true colour image pairs provided by a sensor with all the four bands, which has a broader spectral coverage. A transformation function is fitted by selecting radiometric control points along the line of geometric registration to find a set of coefficients to be used for simulating a blue band. This blue band, along with the green and red bands, provides a near true colour or 'natural colour' on the display. In this paper, we present a set of adjustable radiometric transformation coefficients to accommodate variation in spatial and dynamic range offered by sensors to generate natural colour. These coefficients seem to work on a large number of images of different seasons, provided similar spectral bands and terrain are used. The proposed 'natural colour generator' can be used in changing false colour images to natural colour images with the aim of 'what you get is what you would have seen'.
机译:彩色广泛用于遥感工作。在许多情况下,颜色的使用在视觉和科学上传达了更多的信息。遥感卫星以不同的光谱带观察地球,即。传统的多光谱成像系统中的近红外(NIR),红,绿和蓝波段。在没有蓝色通道的情况下,可以使用近红外,红色和绿色波段(称为假彩色合成(FCC))生成彩色图像,并且看起来不自然,就像我们用肉眼看到的图像一样。对于训练有素的口译员,这不会造成任何问题。但是,当预期的用途是悬垂的地形飞越,视觉解说或用于非远程传感专业人士的显示器时,这将成为一个障碍。为了克服这个问题,需要从给定的假彩色复合物生成自然彩色复合物(NCC),这要求模拟将蓝色带与绿色和红色带组合的模拟。本文介绍了一种独特的方法,该方法可以从给定的伪彩色图像集中生成蓝带以形成自然彩色图像。我们使用一种光谱变换方法来建立由具有所有四个波段的传感器提供的伪彩色图像和真彩色图像对之间的关​​系,它具有更宽的光谱覆盖范围。通过选择沿几何配准线的辐射控制点以找到一组系数以模拟蓝带,可以拟合变换函数。该蓝色带,绿色和红色带在显示屏上提供接近真实的颜色或“自然色”。在本文中,我们提出了一套可调的辐射变换系数,以适应传感器提供的产生自然色彩的空间和动态范围的变化。如果使用相似的光谱带和地形,这些系数似乎适用于大量不同季节的图像。提出的“自然颜色生成器”可用于将假彩色图像更改为自然彩色图像,其目的是“所获得的就是您所看到的”。

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