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Sustainable IT and IT for Sustainability.

机译:可持续性IT和IT促进可持续性。

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摘要

Energy and sustainability have become one of the most critical issues of our generation. While the abundant potential of renewable energy such as solar and wind provides a real opportunity for sustainability, their intermittency and uncertainty present a daunting operating challenge. This thesis aims to develop analytical models, deployable algorithms, and real systems to enable efficient integration of renewable energy into complex distributed systems with limited information.;The first thrust of the thesis is to make IT systems more sustainable by facilitating the integration of renewable energy into these systems. IT represents the fastest growing sectors in energy usage and greenhouse gas pollution. Over the last decade there are dramatic improvements in the energy efficiency of IT systems, but the efficiency improvements do not necessarily lead to reduction in energy consumption because more servers are demanded. Further, little effort has been put in making IT more sustainable, and most of the improvements are from improved "engineering" rather than improved "algorithms". In contrast, my work focuses on developing algorithms with rigorous theoretical analysis that improve the sustainability of IT. In particular, this thesis seeks to exploit the flexibilities of cloud workloads both (i) in time by scheduling delay-tolerant workloads and (ii) in space by routing requests to geographically diverse data centers. These opportunities allow data centers to adaptively respond to renewable availability, varying cooling efficiency, and fluctuating energy prices, while still meeting performance requirements. The design of the enabling algorithms is however very challenging because of limited information, non-smooth objective functions and the need for distributed control. Novel distributed algorithms are developed with theoretically provable guarantees to enable the "follow the renewables" routing. Moving from theory to practice, I helped HP design and implement industry's first Net-zero Energy Data Center.;The second thrust of this thesis is to use IT systems to improve the sustainability and efficiency of our energy infrastructure through data center demand response. The main challenges as we integrate more renewable sources to the existing power grid come from the fluctuation and unpredictability of renewable generation. Although energy storage and reserves can potentially solve the issues, they are very costly. One promising alternative is to make the cloud data centers demand responsive. The potential of such an approach is huge. To realize this potential, we need adaptive and distributed control of cloud data centers and new electricity market designs for distributed electricity resources. My work is progressing in both directions. In particular, I have designed online algorithms with theoretically guaranteed performance for data center operators to deal with uncertainties under popular demand response programs. Based on local control rules of customers, I have further designed new pricing schemes for demand response to align the interests of customers, utility companies, and the society to improve social welfare.
机译:能源和可持续性已经成为我们这一代最关键的问题之一。虽然太阳能和风能等可再生能源的巨大潜力为可持续发展提供了真正的机会,但它们的间歇性和不确定性却带来了艰巨的运营挑战。本文旨在开发分析模型,可部署算法和实际系统,以使可再生能源有效地集成到信息有限的复杂分布式系统中。本文的首要目标是通过促进可再生能源的整合来提高IT系统的可持续性。进入这些系统。在能源使用和温室气体污染方面,IT代表了增长最快的部门。在过去的十年中,IT系统的能源效率有了显着的提高,但是效率的提高并不一定会导致能耗的降低,因为需要更多的服务器。此外,在使IT更具可持续性方面付出了很少的努力,并且大多数改进来自改进的“工程”而不是改进的“算法”。相反,我的工作重点是通过严格的理论分析开发算法,以提高IT的可持续性。特别是,本论文试图通过以下两种方式来利用云工作负载的灵活性:(i)通过计划可容忍延迟的工作负载,以及(ii)通过将请求路由到地理位置不同的数据中心在空间上。这些机会使数据中心可以适应性地响应可再生能源的可用性,变化的冷却效率以及波动的能源价格,同时仍能满足性能要求。但是,由于信息有限,目标函数不平滑以及需要分布式控制,因此启用算法的设计非常具有挑战性。开发了具有理论上可证明的保证的新型分布式算法,以实现“遵循可再生能源”路线。从理论到实践,我帮助惠普设计和实施了业界第一个“零净能耗”能源数据中心。当我们将更多可再生能源整合到现有电网中时,主要挑战来自可再生能源发电的波动性和不可预测性。尽管能量存储和储备可以潜在地解决问题,但它们的成本很高。一种有希望的替代方案是使云数据中心对需求做出响应。这种方法的潜力是巨大的。为了实现这一潜力,我们需要对云数据中心进行自适应和分布式控制,并需要针对分布式电力资源的新电力市场设计。我的工作朝着两个方向发展。特别是,我为数据中心运营商设计了具有理论上保证性能的在线算法,以应对流行的需求响应计划下的不确定性。根据客户的本地控制规则,我进一步设计了新的定价方案以响应需求,以协调客户,公用事业公司和社会的利益,以改善社会福利。

著录项

  • 作者

    Liu, Zhenhua.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Computer Science.;Sustainability.;Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:15

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