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Explicit energy resource management as a first class operating system resource.

机译:显式能源管理作为一流的操作系统资源。

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摘要

Energy consumption has recently been widely recognized as a major challenge for computer system design, especially for mobile systems. The energy constraint will often impact the performance of devices as well as applications. To address this problem, previous works focus on improving energy efficiency of hardwires or reducing energy demand of applications. This thesis advocates a new way to look at the energy problem. It is argued that energy should be managed explicitly as a first-class system resource by the OS and energy-saving efforts across the system should be coordinated in order to achieve global energy-related goals.; This thesis proposes the currentcy model as the basic abstraction for the energy resource. It represents an application's right to consume a certain amount of energy within a fixed amount of time. Currentcy is allocated to applications according to their importance and can be spent on any hardware device to pay for the energy consumption of their activities. Through the management of currentcy, including the currentcy allocation to applications, the currentcy consumption scheduling on devices and currentcy payback, energy could be managed explicitly. A currentcy based energy management framework is proposed in this thesis and it is demonstrated that the battery lifetime (and thus the system lifetime) can be extended while the execution of critical applications can be guaranteed.; The energy resource is a special resource with many unique characteristics. It has impact on all applications as well as all devices, and its management is an unified effort from all system components. These characteristics directly affect the design of the management framework and the management policies. In this thesis, an embedded energy model approach is proposed for energy accounting, the currentcy conserving allocation policy is proposed for efficient management and the currentcy centric scheduling policy is proposed to provide prioritized service to applications. Working within the management framework, these policies can enforce the global goals without application cooperation.; In addition to global management and energy quota enforcement, the management framework is also capable of assisting various local energy-saving efforts. A currentcy-based hard disk scheduler is introduced that schedules hard disk accesses by pseudo-economic activities such as bidding, pricing and debiting. It is shown that by exposing currentcy information to the hard disk, energy can be saved by smarter decisions without violating the global goals. The application-OS interaction for better energy management is also discussed in this thesis.; A prototype system, ECOSystem, is implemented based on the Linux kernel on a laptop platform. The currentcy model, the management framework and the management policies are evaluated using a variety of synthetic benchmarks and real applications. Experiment results show the success of the explicit energy management approach in achieving global energy-related goals and in coordinating various energy-saving efforts.
机译:能耗最近已被广泛认为是计算机系统设计(尤其是移动系统)的主要挑战。能量约束通常会影响设备以及应用程序的性能。为了解决这个问题,先前的工作集中于提高硬线的能量效率或减少应用的能量需求。本文提出了一种解决能源问题的新方法。有人认为,操作系统应将能源作为一流的系统资源进行明确管理,并且应协调整个系统的节能工作,以实现与能源相关的全球目标。本文提出了电流模型作为能源的基本抽象。它表示应用程序有权在固定的时间内消耗一定量的能量。 Currentcy根据其重要性分配给应用程序,并且可以在任何硬件设备上花费,以支付其活动的能耗。通过对电流的管理,包括对应用程序的电流分配,设备上的电流消耗调度和电流回收,可以明确地管理能源。本文提出了一种基于电流的能量管理框架,证明了可以延长电池寿命(从而延长系统寿命),同时保证关键应用的执行。能源是具有许多独特特征的特殊资源。它对所有应用程序和所有设备都有影响,并且其管理是所有系统组件的共同努力。这些特征直接影响管理框架和管理策略的设计。本文提出了一种嵌入式能源模型方法进行能源核算,提出了一种节约电流的分配策略进行有效管理,提出了一种以电流为中心的调度策略,为应用提供优先服务。这些策略在管理框架内工作,无需应用程序合作即可执行全局目标。除了全球管理和能源配额执行之外,管理框架还能够协助各种地方节能工作。引入了基于当前循环的硬盘调度程序,该调度程序通过诸如投标,定价和借方之类的伪经济活动来调度硬盘访问。结果表明,通过将最新信息公开到硬盘上,可以通过更明智的决策节省能源,而不会违反全局目标。本文还讨论了应用程序与操作系统之间的交互,以实现更好的能源管理。在笔记本电脑平台上基于Linux内核实现了原型系统ECOSystem。使用各种综合基准和实际应用程序评估当前模型,管理框架和管理策略。实验结果表明,显式能源管理方法在实现全球能源相关目标以及协调各种节能工作方面取得了成功。

著录项

  • 作者

    Zeng, Heng.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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