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Analysis and Mapping for Thermal and Energy Efficiency of 3-D Video Processing on 3-D Multicore Processors

机译:3-D多核处理器上3-D视频处理的热效率和能源效率的分析和映射

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摘要

Three-dimensional video processing has high computation requirements and multicore processors realized in 3-D integrated circuits (ICs) provide promising high performance computing platforms. However, the conventional approaches to accelerate the computations involved in 3-D video processing do not exploit the high performance potential of 3-D ICs. In this paper, we propose an application-driven methodology that performs efficient mapping of 3-D video applications' components on 3-D multicores to achieve high performance (throughput). The methodology involves an extensive application analysis to exploit the spatial and temporal correlation available in 3-D neighborhood. Afterward, it leverages the correlation and thermal properties of different 3-D views to perform an efficient mapping of 3-D video processing on cores available at different layers of 3-D IC. The goal is to optimize energy consumption and peak temperature while meeting the throughput requirement. Experiments show 76% reduction in communication energy along with reduction in peak temperature when compared with approaches exploiting architecture characteristics only.
机译:三维视频处理具有很高的计算要求,并且以3-D集成电路(IC)实现的多核处理器提供了有希望的高性能计算平台。然而,用于加速3-D视频处理中所涉及的计算的常规方法并未利用3-D IC的高性能潜力。在本文中,我们提出了一种应用程序驱动的方法,该方法可以在3-D多核上执行3-D视频应用程序组件的有效映射,以实现高性能(吞吐量)。该方法涉及广泛的应用分析,以利用3D邻域中可用的空间和时间相关性。之后,它利用不同3D视图的相关性和热属性,在3D IC的不同层上可用的核心上执行3D视频处理的有效映射。目标是在满足吞吐量要求的同时优化能耗和峰值温度。实验表明,与仅利用架构特征的方法相比,通信能量减少了76%,峰值温度也降低了。

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