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首页> 外文期刊>Wireless personal communications: An Internaional Journal >DE-BAR: Device Energy-Centric Backlight and Adaptive Region of Interest Mechanism for Wireless Mobile Devices
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DE-BAR: Device Energy-Centric Backlight and Adaptive Region of Interest Mechanism for Wireless Mobile Devices

机译:脱杆:无线移动设备的设备以能量为中心的背光和自适应感兴趣的机制区域

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One of the main challenges in the smart-phone world is that they are battery constrained and the development of battery technologies have not kept pace with the required energy demand. In particular, there are still significant technological gaps on developing energy-aware solutions that would prolong the battery life of devices without affecting the quality of the distributed video/multimedia content. In this aspect, this paper proposes DE-BAR-a process based innovation that will provide a seamless battery saving mechanism, based on backlight and adaptive region of interest of the streamed multimedia content. This work intends to look at the nature of the video/multimedia content that is received in the device and adapts the energy consumption dynamically at three levels: Screen Colour, backlight and Intensity; and adaptive Region-of-Interest (RoI) based variation in the multimedia content. Notably, the work provides the mechanism for real-time adaptation. The colour intensity, number of RoI for the video sequence and the frame rate is decided by the spatial and temporal complexity of the video. The energy consumption is measured using an Arduino board while video quality is analyzed using extensive subjective tests. The results indicate that more than 50% energy could be saved in the device while retaining above average perceptual video quality.
机译:智能手机世界的主要挑战之一是,它们是电池受限,电池技术的发展尚未与所需的能源需求保持速度。特别是,开发能量感知解决方案仍然存在显着的技术差距,这些解决方案将延长设备的电池寿命而不影响分布式视频/多媒体内容的质量。在这方面,本文提出了脱杆 - 基于过程的创新,将提供无缝电池节省机制,基于流式多媒体内容的背光和自适应景点。这项工作打算看看设备中收到的视频/多媒体内容的性质,并在三个级别动态地适应能量消耗:屏幕颜色,背光和强度;和自适应地区的兴趣区域(ROI)基于多媒体内容的变化。值得注意的是,该工作提供了实时适应的机制。视频序列的颜色强度,ROI数量和帧速率由视频的空间和时间复杂度决定。使用Arduino板测量能量消耗,而使用广泛的主观测试分析视频质量。结果表明,在设备中可以保存超过50%的能量,同时保留高于平均的感知视频质量。

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