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Power-Constrained RGB-to-RGBW Conversion for Emissive Displays: Optimization-Based Approaches

机译:发射显示器的功率受限RGB到RGBW转换:基于优化的方法

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We propose an optimization-based power-constrained red-green-blue (RGB)-to-red-green-blue-white (RGBW) conversion algorithm for emissive RGBW displays. We measure the perceived color distortion using a color difference model in a perceptually uniform color space, and compute the power consumption for displaying an RGBW pixel on an emissive display. The central contribution of this paper is to formulate the optimization problem to minimize the color distortion subject to a constraint on the power consumption. Subsequently, we solve the optimization problem efficiently to convert an image in real time. Furthermore, based on the properties of the human visual system, we extend the proposed algorithm to image-dependent conversion that can preserve spatial detail in an input image. The simulation results show that the proposed algorithm provides a significantly less color distortion than the conventional methods, while providing a graceful tradeoff with the amount of power consumed. Specifically, it is shown that the power consumption can be reduced by up to 20%, while providing about 50% less color distortion than the conventional algorithms. In addition, a subjective evaluation on a real RGBW display is performed, which reveals the merits of the proposed image-dependent conversion for improving the perceptual quality over state-of-the-art techniques.
机译:我们为发光RGBW显示器提出了一种基于优化的功率受限的红绿蓝(RGB)到红绿蓝白(RGBW)转换算法。我们使用色差模型在可感知的均匀色彩空间中测量可感知的色彩失真,并计算在发光显示器上显示RGBW像素的功耗。本文的主要贡献是制定优化问题,以在受到功耗限制的情况下最大程度地减少颜色失真。随后,我们有效地解决了优化问题,以实时转换图像。此外,基于人类视觉系统的属性,我们将提出的算法扩展到可以在输入图像中保留空间细节的图像相关转换。仿真结果表明,与传统方法相比,所提出的算法提供了显着更少的色彩失真,同时在功耗方面提供了一个适度的权衡。具体而言,显示出可以将功耗降低多达20%,同时提供比常规算法少约50%的颜色失真。此外,在真实的RGBW显示器上进行了主观评估,这揭示了所提出的图像依赖转换的优点,该转换可用于通过先进技术改善感知质量。

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