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Packet Coalescing and Server Substitution for Energy-Proportional Operation of Network Links and Data Servers.

机译:数据包合并和服务器替代,用于按比例分配网络链接和数据服务器的能量。

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摘要

Electricity generation for Information and Communications Technology (ICT) contributes over 2% of the human-generated CO2 to the atmosphere. Energy costs are rapidly becoming the major operational expense for ICT and may soon dwarf capital expenses as software and hardware continue to drop in price. In this dissertation, three new approaches to achieving energy-proportional operation of network links and data servers are explored.;Ethernet is the dominant wireline communications technology for Internet connectivity. IEEE 802.3az Energy Efficient Ethernet (EEE) describes a Low Power Idle (LPI) mechanism for allowing Ethernet links to sleep. A method of coalescing packets to consolidate link idle periods is investigated. It is shown that packet coalescing can result in almost fully energy-proportional behavior of an Ethernet link. Simulation is done at both the queuing and protocol levels for a range of traffic models and system configurations. Analytical modeling is used to gain a deeper general insight into packet coalescing.;The architecture of a hybrid web server based on two platforms – a low-power (ARM based) and a high-power (Pentium based) – can be used to achieve step-wise energy-proportional operation and maintain headroom for peak loads. A new method based on Gratuitous ARP for switching between two mirrored platforms is developed, prototyped, and evaluated. Experimental results show that for up to 50 requests per minute, a hybrid server where the Master platform is a 2012 server-grade desktop PC can sleep for 50% of time with no increase in response time.;HTTP can be used for redirection in space – a new method for precise redirection in time is proposed and used to schedule requests to a high-power server in a hybrid server. The scheduling method is modeled as a single server queue with vacations where the vacation duration is fixed and the service distribution is directly a function of the request load. This approach is well suited for delay tolerant applications such as application updates and file back-up. Energy-proportional operation is shown to be achievable in a prototype system.;A first-order estimation with conservative assumptions on the adoption rate of the methods proposed and studied here shows that these methods can collectively enable energy savings in the order of hundreds of million dollars in the US annually.
机译:信息和通信技术(ICT)的发电向大气中贡献了人类产生的二氧化碳的2%以上。能源成本正迅速成为ICT的主要运营支出,并且由于软件和硬件的价格继续下跌,可能很快使资本支出相形见.。本文探讨了实现网络链路和数据服务器能量比例运行的三种新方法。以太网是互联网连接的主要有线通信技术。 IEEE 802.3az节能以太网(EEE)描述了一种低功耗空闲(LPI)机制,用于允许以太网链路进入睡眠状态。研究了一种合并数据包以巩固链路空闲时间的方法。结果表明,分组合并可以导致以太网链路的几乎完全与能量成比例的行为。针对一系列流量模型和系统配置,在排队和协议级别都进行了仿真。使用分析模型可以更深入地了解数据包合并。;基于两个平台(低功耗(基于ARM)和高功耗(基于Pentium))的混合Web服务器的体系结构可用于实现以下目标:逐步按比例分配能量并保持峰值负载的净空。开发,原型化和评估了一种基于免费ARP的在两个镜像平台之间切换的新方法。实验结果表明,以Master平台为2012服务器级台式PC的混合服务器,每分钟最多可以处理50个请求,而无需增加响应时间即可休眠50%的时间; HTTP可用于空间重定向–提出了一种用于及时精确重定向的新方法,该方法用于将请求调度到混合服务器中的高功率服务器。调度方法被建模为带有休假的单个服务器队列,休假的持续时间是固定的,服务分配直接取决于请求负载。这种方法非常适合延迟容忍的应用程序,例如应用程序更新和文件备份。证明在原型系统中可以实现按比例运行的能源。在此对本文提出和研究的方法的采用率进行保守估计的一阶估算表明,这些方法可以共同节省数亿美元的能源。在美国每年

著录项

  • 作者

    Mostowfi, Mehrgan.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Engineering Computer.;Computer Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 132 p.
  • 总页数 132
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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