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Race-To-Sleep + Content Caching + Display Caching: A Recipe for Energy-efficient Video Streaming on Handhelds

机译:赛车到睡眠+内容缓存+显示缓存:手持式节能视频流的配方

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Video streaming has become the most common application in handhelds and this trend is expected to grow in future to account for about 75% of all mobile data traffic by 2021. Thus, optimizing the performance and energy consumption of video processing in mobile devices is critical for sustaining the handheld market growth. In this paper, we propose three complementary techniques, race-to-sleep, content caching and display caching, to minimize the energy consumption of the video processing flows. Unlike the state-of-the-art frame-by-frame processing of a video decoder, the first scheme, race-to-sleep, uses two approaches, called batching of frames and frequency boosting to prolong its sleep state for saving energy, while avoiding any frame drops. The second scheme, content caching, exploits the content similarity of smaller video blocks, called macroblocks, to design a novel cache organization for reducing the memory pressure. The third scheme, in turn, takes advantage of content similarity at the display controller to facilitate display caching further improving energy efficiency. We integrate these three schemes for developing an end-to-end video processing framework and evaluate our design on a comprehensive mobile system design platform with a variety of video processing workloads. Our evaluations show that the proposed three techniques complement each other in improving performance by avoiding frame drops and reducing the energy consumption of video streaming applications by 21%, on average, compared to the current baseline design.
机译:视频流媒体已成为手持设备中最常见的应用,并预计这一趋势,到2021年以后增长到占所有移动数据流量的75%左右。因此,优化视频处理的性能和能耗的移动设备是关键保持手持设备市场的增长。在本文中,我们提出了三种互补的技术,比赛至睡眠,内容缓存和缓存显示,以尽量减少视频处理流程的能耗。不同于视频解码器的状态的最先进的帧接一帧的处理时,第一方案,种族至睡眠,使用两种方法,被称为帧和频率提升,以延长其睡眠状态的节能的配料,同时避免任何帧滴。第二种方案中,内容高速缓存,利用较小的视频块,称为宏块,的内容相似性,设计一种新的高速缓冲存储器组织用于减小存储器的压力。第三种方案,反过来,利用内容的相似性,在所述显示控制器显示方便缓存进一步提高能源效率。我们整合这三个方案来开发一个终端到高端视频处理框架和评估我们在一个全面的移动系统设计平台与各种视频处理工作负载设计。我们的评估表明,所提出的三种技术中通过避免丢帧和21%减少的视频流应用的能耗,平均而言,相比于当前基线设计提高性能相得益彰。

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