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Modeling Power-Constrained Optimal Backlight Dimming for Color Displays

机译:为彩色显示器建模功率受限的最佳背光调光

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摘要

In this paper, we present a framework for modeling color liquid crystal displays (LCDs) having local light-emitting diode (LED) backlight with dimming capability. The proposed framework includes critical aspects like leakage, clipping, light diffusion and human perception of luminance and allows adjustable penalization of power consumption. Based on the framework, we have designed a set of optimization-based backlight dimming algorithms providing a perceptual optimal balance of clipping and leakage, if necessary. The novel algorithms are compared with several other schemes known from the literature, using both objective measures and subjective assessment. The results show that the novel algorithms provide better quality at a given energy level or lower energy at a given quality level.
机译:在本文中,我们提出了一种用于建模具有局部光二极管(LED)背光且具有调光功能的彩色液晶显示器(LCD)的框架。所提出的框架包括关键方面,例如泄漏,削波,光扩散和人类对亮度的感知,并允许对功耗进行可调节的惩罚。基于该框架,我们设计了一组基于优化的背光调光算法,必要时可提供削波和漏电的感性最佳平衡。使用客观测量和主观评估,将新颖算法与文献中已知的其他几种方案进行比较。结果表明,该新颖算法在给定能量水平下可提供更好的质量,在给定质量水平下可提供更低的能量。

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