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Energy Storage on the Grid and the Short-term Variability of Wind.

机译:电网上的能量存储和风的短期变化。

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摘要

Wind generation presents variability on every time scale, which must be accommodated by the electric grid. Limited quantities of wind power can be successfully integrated by the current generation and demand-side response mix but, as deployment of variable resources increases, the resulting variability becomes increasingly difficult and costly to mitigate. In Chapter 2, we model a co-located power generation/energy storage block composed of wind generation, a gas turbine, and fast-ramping energy storage. A scenario analysis identifies system configurations that can generate power with 30% of energy from wind, a variability of less than 0.5% of the desired power level, and an average cost around ;While energy storage technologies have existed for decades, fast-ramping grid-level storage is still an immature industry and is experiencing relatively rapid improvements in performance and cost across a variety of technologies. Decreased capital cost, increased power capability, and increased efficiency all would improve the value of an energy storage technology and each has cost implications that vary by application, but there has not yet been an investigation of the marginal rate of technical substitution between storage properties. The analysis in chapter 3 uses engineering-economic models of four emerging fast-ramping energy storage technologies to determine which storage properties have the greatest effect on cost-of-service. We find that capital cost of storage is consistently important, and identify applications for which power/energy limitations are important.;In some systems with a large amount of wind power, the costs of wind integration have become significant and market rules have been slowly changing in order to internalize or control the variability of wind generation. Chapter 4 examines several potential market strategies for mitigating the effects of wind variability and estimate the effect that each strategy would have on the operation and profitability of wind farms. We find that market scenarios using existing price signals to motivate wind to reduce variability allow wind generators to participate in variability reduction when the market conditions are favorable, and can reduce short-term (30-minute) fluctuations while having little effect on wind farm revenue.
机译:风力在每个时间尺度上都呈现出可变性,必须由电网来适应。可以通过当前的发电量和需求方的响应组合成功地整合数量有限的风电,但是,随着可变资源的部署增加,所产生的可变性将变得越来越困难,并且降低成本的成本越来越高。在第2章中,我们对由风力发电,燃气轮机和快速升温储能组成的并置发电/储能模块进行建模。情景分析确定了可以使用30%的风能发电,可变性小于所需功率水平的0.5%以及平均成本的系统配置;尽管储能技术已经存在了数十年,但电网发展迅速级存储仍然是一个不成熟的行业,并且正在通过各种技术在性能和成本方面实现相对快速的改进。降低的资本成本,增加的功率能力和提高的效率都将提高储能技术的价值,并且每种成本都会因应用而异,但是尚未对储能之间技术替代的边际率进行调查。第3章中的分析使用了四种新兴的快速过渡能量存储技术的工程经济模型来确定哪些存储属性对服务成本影响最大。我们发现存储的资本成本始终很重要,并确定了对功率/能量限制很重要的应用。在某些风力发电量较大的系统中,风力发电的成本已变得非常高,市场规则也在缓慢变化为了内部化或控制风力的变化。第4章研究了减轻风能波动影响的几种潜在市场策略,并评估了每种策略对风电场运营和盈利能力的影响。我们发现,使用现有价格信号激励风能以减少波动性的市场情景允许风电商在市场条件有利时参与降低波动性,并可以减少短期(30分钟)波动,而对风电场收益几乎没有影响。

著录项

  • 作者

    Hittinger, Eric Stephen.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Alternative Energy.;Energy.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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