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Optimized GPU-based post-processing for stereoscopic multi-projector display systems

机译:基于GPU的立体多投影仪显示系统的优化基于GPU的后处理

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摘要

To drive multi-projector display systems, the image content has to be post-processed to apply geometrical and photometrical correction algorithms. Since the optical path is shared for both views of a stereoscopic projector, we propose to eliminate redundant calculations by processing both views at once. We show that by exploiting the color similarities of stereoscopic image pairs, the cache efficiency of LUT-based color correction methods can be improved. Stereoscopic content is often transmitted in different formats where a single frame represents both views in a spatially multiplexed pattern, and display devices typically support only a subset of these formats, so that the need for conversion arises. We propose an algorithm to directly incorporate such format conversions into the post-processing and show that our combined approach can achieve significant performance improvements compared to the naive multi-pass implementation. The reduced overhead of the post-processing step increases the number of projectors which can be driven by a single GPU, which enables building larger or higher resolution displays at lower costs. The flexibility gained by the ability to process different input formats also greatly enhances the usability of powerwalls by allowing to implement the post-processing at different levels and working with unmodified software applications.
机译:为了驱动多投影仪显示系统,必须将图像内容进行后处理以应用几何和光学校正算法。由于光路被共享用于立体投影仪的视图,因此我们建议通过一次处理两个视图来消除冗余计算。我们表明,通过利用立体图像对的颜色相似性,可以提高基于LUT的颜色校正方法的高速缓存效率。立体内容通常以不同的格式发送,其中单帧表示空间多路复用模式中的两个视图,并且显示设备通常仅支持这些格式的子集,从而出现对转换的需要。我们提出了一种直接将这种格式转换的算法转化为后处理,并表明我们的组合方法可以实现与天真的多通道实现相比的显着性能改进。后处理步骤的减少的开销增加了可以由单个GPU驱动的投影仪的数量,这使得能够以较低的成本构建更大或更高的分辨率显示。通过处理不同输入格式的能力所获得的灵活性也大大提高了PowerWalls的可用性,允许在不同级别实现并使用未修改的软件应用程序。

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