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Performance and economic evaluation of storage technologies.

机译:存储技术的性能和经济评估。

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摘要

In the last decade there has been a drastic increase in the penetration of variable generation (VG) such as wind and solar. VG increases the MW variability that must be met in the regulation and reserve markets. If VG penetration levels are allowed to increase without providing additional flexibility in the form of fast response regulation, reserves, and capacity, then the required capabilities will be provided by the existing conventional generation fleet. This "do-nothing" approach will lead to increased cycling of the existing plants and thus weaken the health of the current grid. The increase VG capacity penetration will also necessitate increased transmission capability in the grid in order to facilitate increased VG energy penetration. All these boils down to endowing the grid with the capability to be flexible by investigating the various options such as transmission expansion, demand control, fast responding generation, VG MW output control, expanding the balancing areas and/or investing in storage technology.;In this dissertation, the primary focus is on storage technologies, which is one of the attractive means to meet VG variability due to their fast response. With sufficient energy storage capability, they also promise many other valuable grid services such as peak shaving, load leveling, relieving congestion, increasing VG energy penetration, and deferring generation and transmission expansion plans. The objective and contribution of the dissertation is hinged on developing tools and assessment methodologies to perform economic assessment of storage.;The work develops a high-fidelity technology adaptive storage dispatch model for production costing study within a co-optimized energy and ancillary market. This tool is used to investigate the grid benefits and economic viability of different class of storage under various wind penetration scenarios, compare them with other competing solutions, and devise appropriate monetizing schemes for their services. This work also proposes an integrated approach involving production costing and automatic generation control simulation tools to assess short-term storages. Based on the application in IEEE 24 bus system, many conclusions and indicators on storage venture's profitability and risks are drawn.
机译:在过去的十年中,风能和太阳能等可变发电(VG)的普及率急剧上升。 VG增加了监管和储备市场必须满足的兆瓦可变性。如果允许增加VG渗透水平而又不以快速响应法规,储备和容量的形式提供额外的灵活性,那么现有的常规发电船队将提供所需的能力。这种“无所作为”的方法将导致现有工厂的循环次数增加,从而削弱当前电网的运行状况。 VG容量渗透率的增加也将需要增加电网的传输能力,以促进VG能量渗透率的提高。通过研究各种选项,例如传输扩展,需求控制,快速响应发电,VG MW输出控制,扩展平衡区域和/或投资存储技术,所有这些归结为赋予电网灵活的能力。本文主要研究存储技术,由于其快速响应,是满足VG可变性的诱人手段之一。凭借足够的能量存储能力,它们还有望提供许多其他有价值的电网服务,例如调峰,负载均衡,缓解拥堵,增加VG能量渗透以及推迟发电和输电扩展计划。论文的目的和贡献在于开发用于存储经济性评估的工具和评估方法。该工作开发了一种高保真技术自适应存储调度模型,用于在共同优化的能源和辅助市场中进行生产成本研究。该工具用于调查在各种风穿透情况下不同类别存储的电网收益和经济可行性,将其与其他竞争解决方案进行比较,并为其服务设计适当的货币化方案。这项工作还提出了一种集成方法,其中涉及生产成本核算和自动发电控制仿真工具来评估短期存储。基于IEEE 24总线系统的应用,得出了很多关于存储企业盈利能力和风险的结论和指标。

著录项

  • 作者

    Das, Trishna.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 257 p.
  • 总页数 257
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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