首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Power Dissipation of the Network-on-Chip in Multi-Processor System-on-Chip Dedicated for Video Coding Applications
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Power Dissipation of the Network-on-Chip in Multi-Processor System-on-Chip Dedicated for Video Coding Applications

机译:专用于视频编码应用的多处理器片上系统中片上网络的功耗

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In the near future, small electronic hand-held devices will be equipped with digital cameras capable of acquiring high resolution images (HDTV) at realtime rates, resulting in video streams of dozens of megabytes per second. The real-time video decoding and especially encoding of such streams with AVC/H.264 or SVC standards require a huge amount of computing power that, in the case of a hand-held device, has to be delivered under the constraint of low power dissipation. In this paper we present a Multi-Processor System-on-Chip dedicated for high performance, low-power video coding applications using Network-on-Chip (NoC) as communication infrastructure. Extensive experiments have established the power dissipation models of individual NoC components, i.e. network interfaces, routers and wires. Based on thesernmodels and the NoC topology, we build the power model of the complete NoC. For three different implementation scenarios of the AVC/H.264 simple profile encoder we derive the power dissipation of the NoC for image resolutions up to HDTV at rate of 30 frames per second. The results obtained show that for the same application mapping scenario (worst case), moving from CIF to HDTV resolution will result in a 35% increase of the total power dissipation. Finally, for HDTV resolution, the difference in power dissipation between the worst (21 mW) and the best case application mapping scenario is 26%.
机译:在不久的将来,小型电子手持设备将配备能够实时采集高分辨率图像(HDTV)的数码相机,从而产生每秒数十兆字节的视频流。实时视频解码,尤其是使用AVC / H.264或SVC标准对此类流进行编码,需要大量的计算能力,在手持设备的情况下,必须在低功率的约束下进行传输耗散。在本文中,我们提出了一种使用片上网络(NoC)作为通信基础设施的专用于高性能,低功耗视频编码应用的多处理器片上系统。广泛的实验已经建立了各个NoC组件(即网络接口,路由器和电线)的功耗模型。基于这些模型和NoC拓扑,我们建立了完整NoC的功率模型。对于AVC / H.264简单配置文件编码器的三种不同实现方案,我们以每秒30帧的速率导出NoC的功耗,以达到高达HDTV的图像分辨率。获得的结果表明,对于相同的应用程序映射场景(最坏的情况),从CIF转换为HDTV分辨率将导致总功耗增加35%。最后,对于HDTV分辨率,最差的应用映射情况(21 mW)与最佳情况的功耗之间的差异为26%。

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