Dynamic backlight scaling considering ambient luminance for mobile energy saving

Wei Sun, Guangtao Zhai, Xiongkuo Min, Yutao Liu, Siwei Ma, Jing Liu, Jiantao Zhou, Xianming Liu
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引用次数: 5

Abstract

The mobile video playback involves many subsystems of the devices such as computing, rendering and displaying subsystems. Among all subsystems, the displaying subsystem accounts for at least 38% of all consumed power, and it can be up to 68% with the maximum backlight brightness. What is more, lots of people watch videos via mobile devices in various situations, where the ambient luminance condition is different. Therefore, how to save mobile energy and improve the Quality of Experience (QoE) in different situations become significant problems. In this paper, we try to maximally enhance the battery power performance under various ambient luminance conditions through backlight magnitude adjusting, while without negatively impacting users' QoE. In particular, we conduct a series of subject quality assessment experiments to uncover the quantitative relationship among QoE, ambient luminance, video content luminance and backlight level. We first study whether the continuous playback of backlight-scaled shots using the proposed scaling magnitude would cause flicker effect or not. Then motivated by the findings of these subject studies, we implement a Dynamic Backlight Scaling (DBS) strategy. The experiment results demonstrate that the DBS strategy can save more than 40% power at most and can also save 10% power even at a very high ambient luminance.
考虑环境亮度的动态背光缩放移动节能
移动视频播放涉及设备的多个子系统,如计算子系统、呈现子系统、显示子系统等。在所有子系统中,显示子系统至少占所有消耗功率的38%,在最大背光亮度下可高达68%。更重要的是,许多人在各种情况下通过移动设备观看视频,环境亮度条件不同。因此,如何在不同的情况下节约移动能源,提高体验质量(QoE)成为重要的问题。在本文中,我们试图在不影响用户QoE的情况下,通过调整背光亮度,最大限度地提高电池在各种环境亮度条件下的电量性能。特别是,我们进行了一系列受试者质量评价实验,揭示了QoE与环境亮度、视频内容亮度和背光水平之间的定量关系。我们首先研究了使用所提出的缩放幅度连续播放背光缩放镜头是否会产生闪烁效应。然后,在这些主题研究结果的激励下,我们实现了动态背光缩放(DBS)策略。实验结果表明,DBS策略最多可节省40%以上的功耗,即使在非常高的环境亮度下也可节省10%的功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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