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Energy efficient Data Centers for on-demand cloud services.

机译:用于按需云服务的节能数据中心。

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摘要

The primary objective of the Data Centers (DCs) is to provide in-time services to the cloud customers. For in-time services, DCs required an uninterruptable power supply at low cost. The DCs' power supply is directly linked with the stability and steady-state performance of the power system under faults and disturbances. Smart Grids (SGs) also known as the next generation power systems utilize communication and information technology to optimize power generation, distribution, and consumption. Therefore, it is beneficial to run DCs under SG environment. We present a thorough study of the wide area smart grid architecture, design, network, and control. The goal was to familiarize with the smart grid operation, monitoring, and control. We analyze different control mechanisms proposed in the past to study the behavior of the wide area smart grid symmetric and asymmetric grid faults conditions.;The Study of the SG architecture was a first step to design power management and energy cost reduction models for the DC running under SGs. At first, we present a Power Management Model (PMM) for the DCs to estimate energy consumption cost. The PMM is a comprehensive model that considers many important quantities into account, such as DC power consumption, data center battery bank charging/discharging, backup generation operation during power outages, and power transactions between the main grid and the SG. Second, renewable energy, such as wind energy is integrated with the SG to minimize DC energy consumption cost. Third, forecasting algorithms are introduced in the PMM to predict DC power consumption, wind energy generation, and main grid power availability for the SG. The forecasting algorithms are employed for day-ahead and week-ahead prediction horizons. The purpose of the forecasting algorithms is to manage power generation and consumption, and reduce energy prices. Fourth, we formulate chargeback model for the DC customers to calculate on-demand cloud services cost. The DC energy consumption cost estimated through PMM is integrated with the other operational and capital expenditures to calculate per server utilization cost for the DC customers. Finally, the effectiveness of the proposed models is evaluated on real-world data sets.
机译:数据中心(DC)的主要目标是为云客户提供及时的服务。对于及时服务,DC需要低成本的不间断电源。 DC的电源与故障和干扰下的电力系统的稳定性和稳态性能直接相关。智能电网(SG)也被称为下一代电力系统,它利用通信和信息技术来优化发电,分配和消耗。因此,在SG环境下运行DC是有利的。我们对广域智能电网的架构,设计,网络和控制进行了全面的研究。目标是熟悉智能电网的运行,监视和控制。我们分析了过去提出的不同控制机制,以研究广域智能电网对称和非对称电网故障条件的行为。; SG结构的研究是设计直流运行的电源管理和降低能源成本模型的第一步在SGs下。首先,我们为DC提供一种电源管理模型(PMM),以估算能耗成本。 PMM是一个综合模型,它考虑了许多重要的量,例如直流功耗,数据中心电池组的充电/放电,停电期间的备用发电操作以及主电网与SG之间的电力交易。其次,可再生能源(例如风能)与SG集成在一起,以最大程度地降低直流能源消耗成本。第三,在PMM中引入了预测算法,以预测SG的DC功耗,风能发电和主电网功率可用性。预测算法用于提前一天和提前一周的预测范围。预测算法的目的是管理发电和消耗,并降低能源价格。第四,我们为DC客户制定了计费模型,以计算按需云服务成本。通过PMM估算的DC能耗成本与其他运营和资本支出相结合,以计算DC客户每台服务器的使用成本。最后,在实际数据集上评估了所提出模型的有效性。

著录项

  • 作者

    Jawad, Muhammad.;

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Electrical engineering.;Engineering.;Computer engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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