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Color consistency for digital multi-projector stereo display systems

机译:数字多投影仪立体声显示系统的颜色一致性

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Digital projectors have a significant advantage over CRTs for IPT setups: brightness. But they also have a number of disadvantages, one of which is color consistency. This problem is exacerbated when using the Infitec method for stereo separation, which in itself has some strong advantages for CAVE and tiled wall setups. In this paper we will describe a method for color and brightness correction of multi-projector display systems. The method itself is used in two new projection systems, which are currently under construction at Fraunhofer-IGD: The HEyewall and the Digital CAVE. The HEyeWall is the first stereo capable tiled display worldwide. The Digital CAVE is the first CAVE with digital projectors and stereo separation based on Infotec(tm). In this paper we present these new IPTs in more detail and also present our experience with digital projectors.To calibrate all the involved projectors photometric measurements of the different projectors are used to calculate a common gamut in a linear colorspace. Input colors are mapped into this gamut and from there mapped into the individual projector's colorspace. This method allows to adjust the rendering output of two or more projectors with different color gamuts in such a way that the projected images are photometrically calibrated. Since the correction has to be done for each pixel, a straightforward implementation would be very slow and far away from realtime. Consequently we will outline a method how to improve performance and overcome this limitation.
机译:数字投影仪对IPT设置的CRT具有显着优势:亮度。但它们也有许多缺点,其中一个是颜色一致性。使用Infitec方法对于立体声分离时,此问题会加剧,这本身对洞穴和瓷砖墙面设置具有一些强大的优势。在本文中,我们将描述多投影仪显示系统的颜色和亮度校正方法。该方法本身用于两个新的投影系统,目前正在弗劳恩霍夫尔 - IGD的建设:Heyewall和数字洞穴。 Heyewall是全球第一个能干的瓷砖展示。数字洞是第一个具有数字投影仪的洞穴和基于Infotec(TM)的立体声分离。在本文中,我们更详细地介绍了这些新的IPT,并且还提供了我们使用数字投影仪的经验。校准所有涉及的投影仪的不同投影仪的光度测量用于计算线性色彩空间中的常见色域。输入颜色被映射到此域中,并从那里映射到各个投影机的颜色空间。该方法允许使用不同的颜色色域调整两个或更多个投影仪的渲染输出,以使得投影图像被复像地校准。由于必须为每个像素完成校正,因此直接实现将非常慢,远离实时。因此,我们将概述一种方法如何提高性能并克服这种限制。

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