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Computationally efficient brightness compensation and contrast enhancement for transmissive liquid crystal displays

机译:透射型液晶显示器的计算有效亮度补偿和对比度增强

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High-quality displays tend to consume significant power in mobile devices. Currently, transmissive liquid crystal displays are among the most common. They are non-emissive and rely on a backlight behind the display panel. Brightness compensation refers to the signal processing technique to adaptively dim the backlight to reduce the power consumption, while increasing the pixel values to preserve the visual quality of the images or even enhance their contrast. Fast computation of the brightness compensation algorithm is essential for practical use. In this paper, we show that a state-of-the-art brightness compensation algorithm, which requires iterations and is computationally demanding, can in fact be solved with a closed-form solution. We also demonstrate with experimental results that we can achieve approximately an 800-fold speedup, while providing effectively identical images to those obtained by the original method.
机译:高质量的显示器倾向于在移动设备中消耗大量功率。当前,透射型液晶显示器是最常见的。它们是非发射性的,并且依赖于显示面板后面的背光。亮度补偿是指一种信号处理技术,用于使背光自适应变暗以减少功耗,同时增加像素值以保留图像的视觉质量甚至增强其对比度。快速计算亮度补偿算法对于实际使用至关重要。在本文中,我们表明,可以通过封闭形式的解决方案实际上可以解决需要迭代且计算量很大的最新亮度补偿算法。我们还通过实验结果证明,我们可以实现大约800倍的加速,同时提供与原始方法获得的图像完全相同的图像。

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