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A Light-weight Approach to Reducing Energy Management Delays in Bisks

机译:一种重量轻的方法,可以减少大自动的能源管理延误

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Today's enterprise computing systems routinely employ a large number of computers for tasks ranging from supporting daily business operations to mission-critical back-end applications. These computers consume a lot of energy whose monetary cost accounts for a significant portion of an enterprise's operating budget. Consequently, enterprises employ energy saving techniques such as turning machines off overnight and dynamic energy management during the business hours. Unfortunately, dynamic energy management, especially that for disks, introduces delays when an accessed disk is in a low power state and needs to be brought into an active state. Existing techniques mainly focus on reducing energy consumption and do not take advantage of enterprise-wide resources to mitigate the associated delays. Thus, systems designers are faced with a critical trade-off: saving energy reduces operating costs but may increase the delays exposed to the users, conversely, reducing access latencies and making the system more responsive may preclude energy management techniques. In this paper, we propose System-wide Alternative Retrieval of Data (SARD) that exploits the large number of machines in an enterprise environment to transparently retrieve binaries from other nodes, thus avoiding access delays when the local disk is in a low power mode. SARD uses a software-based approach to reduce spin-up delays while eliminating the need for major operating system changes, custom buffering, or shared memory infrastructure. The main goal of SARD is not to increase energy savings, rather reduce delays associated with energy management techniques, which will encourage users to utilize energy management techniques more frequently and realize the energy savings. Our evaluation of SARD using trace-driven simulations as well as an actual implementation in a real system shows over 71% average reduction in delays associated with energy management. Moreover, SARD achieves an additional 5.1% average reduction in energy consumption for typical desktop applications compared to the widely-used timeout-based disk energy management.
机译:今天的企业计算系统经常使用大量计算机进行任务,从支持日常业务运营到关键任务后端应用程序。这些计算机消耗了许多能源,其货币成本占企业经营预算的重要部分。因此,企业采用节能技术,如在营业时间期间关闭机器隔夜和动态能源管理。不幸的是,动态能量管理,特别是对于磁盘,当访问的磁盘处于低功率状态时延迟引入延迟,并且需要进入活动状态。现有技术主要关注降低能耗,并不利用企业范围的资源来减轻相关延误。因此,系统设计人员面临着关键权衡:节省能源降低了运营成本,但可能会增加暴露于用户的延迟,相反地,减少访问延迟并使系统更响应于能量管理技术可能排除能量管理技术。在本文中,我们提出了系统范围的替代检索数据(SARD),该数据(SARD)利用企业环境中的大量机器来透明地检索来自其他节点的二进制文件,从而避免当本地磁盘处于低功率模式时的访问延迟。 SARD使用基于软件的方法来减少旋转延迟,同时消除了主要操作系统的需要更改,自定义缓冲或共享内存基础架构。 SARD的主要目标是不增加节能,而是减少与能源管理技术相关的延误,这将鼓励用户更频繁地利用能源管理技术并实现节能。我们对SARD使用跟踪驱动模拟的评估以及实际系统中的实际实现显示了与能源管理相关的延迟延迟超过71%。此外,与基于基于超时的超时的磁盘能量管理相比,SARD达到了典型桌面应用的能耗的额外5.1%的平均降低。

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