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Constrained Energy Optimization in Heterogeneous Platforms using Generalized Scaling Models.

机译:使用广义缩放模型在异构平台上进行约束能量优化。

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摘要

Mobile platforms are becoming highly heterogeneous by combining a powerful multiprocessor system-on-chip (MpSoC) with numerous resources including display, memory, power management IC (PMIC), battery and wireless modems into a compact package. Furthermore, the MpSoC itself is a heterogeneous resource that integrates many processing elements such as CPU cores, GPU, video, image, and audio processors. As a result, optimization approaches targeting mobile computing needs to consider the platform at various levels of granularity.;Platform energy consumption and responsiveness are two major considerations for mobile systems since they determine the battery life and user satisfaction, respectively. In this work, the models for power consumption, response time, and energy consumption of heterogeneous mobile platforms are presented. Then, these models are used to optimize the energy consumption of baseline platforms under power, response time, and temperature constraints with and without introducing new resources. It is shown, the optimal design choices depend on dynamic power management algorithm, and adding new resources is more energy efficient than scaling existing resources alone. The framework is verified through actual experiments on Qualcomm Snapdragon 800 based tablet MDP/T. Furthermore, usage of the framework at both design and runtime optimization is also presented.
机译:通过将功能强大的多处理器片上系统(MpSoC)与众多资源(包括显示器,存储器,电源管理IC(PMIC),电池和无线调制解调器)组合到紧凑的封装中,移动平台变得高度异构。此外,MpSoC本身是一种异构资源,它集成了许多处理元素,例如CPU内核,GPU,视频,图像和音频处理器。结果,针对移动计算的优化方法需要在各种粒度级别上考虑平台。平台能耗和响应能力是移动系统的两个主要考虑因素,因为它们分别确定电池寿命和用户满意度。在这项工作中,提出了异构移动平台的功耗,响应时间和能耗模型。然后,在引入和不引入新资源的情况下,这些模型用于优化基准平台在功率,响应时间和温度约束下的能耗。结果表明,最佳设计选择取决于动态电源管理算法,与仅扩展现有资源相比,添加新资源更具能源效率。该框架已通过基于Qualcomm Snapdragon 800的平板电脑MDP / T的实际实验得到验证。此外,还介绍了该框架在设计和运行时优化上的用法。

著录项

  • 作者

    Gupta, Ujjwal.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.;Engineering Computer.
  • 学位 M.S.
  • 年度 2014
  • 页码 91 p.
  • 总页数 91
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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