能量感知MPEG-4 FGS流

Kihwan Choi, Kwanho Kim, Massoud Pedram
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引用次数: 33

摘要

在本文中,我们提出了一个具有客户端反馈的能量感知MPEG-4 FGS视频流系统。在这个客户端-服务器系统中,电池供电的移动客户端将其最大解码能力(即其解码能力)发送给服务器,以帮助服务器确定它发送给客户端的每帧额外的数据量(以基础层之上的增强层的形式),从而设置其数据速率。在客户端,使用动态电压和频率缩放技术来调整客户端的解码能力,同时满足对最低实现视频质量的约束。为了衡量视频流的能源效率,引入了标准化解码负载的概念。结果表明,视频流系统在保持统一的归一化负载的情况下,可以产生无能量浪费的最佳视频质量。我们在一个基于xscale的测试平台上实现了一个MPEG-4 FGS视频流系统,其中服务器和移动客户端通过反馈通道无线连接。根据该测试平台的实际电流测量结果,通过使MPEG-4 FGS拖缆能量感知,我们在客户端平均减少了20%的通信能量。
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Energy-aware MPEG-4 FGS streaming
In this paper, we propose an energy-aware MPEG-4 FGS video streaming system with client feedback. In this client-server system, the battery-powered mobile client sends its maximum decoding capability (i.e., its decoding aptitude) to the server in order to help the server determine the additional amount of data (in the form of enhancement layers on top of the base layer) per frame that it sends to the client, and thereby, set its data rate. On the client side, a dynamic voltage and frequency scaling technique is used to adjust the decoding aptitude of the client while meeting a constraint on the minimum achieved video quality. As a measure of energy efficiency of the video streamer, the notion of a normalized decoding load is introduced. It is shown that a video streaming system that maintains this normalized load at unity produces the optimum video quality with no energy waste. We implemented an MPEG-4 FGS video streaming system on an XScale-based testbed in which a server and a mobile client are wirelessly connected by a feedback channel. Based on the actual current measurements in this testbed, we obtain an average of 20% communication energy reduction in the client by making the MPEG-4 FGS streamer energy-aware.
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