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Control of dispatch dynamics for lowering the cost of distributed generation in the built environment.

机译:控制调度动态,以降低构建环境中分布式发电的成本。

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摘要

Distributed generation can provide many benefits over traditional central generation such as increased reliability and efficiency while reducing emissions. Despite these potential benefits, distributed generation is generally not purchased unless it reduces energy costs. Economic dispatch strategies can be designed such that distributed generation technologies reduce overall facility energy costs. In this thesis, a microturbine generator is dispatched using different economic control strategies, reducing the cost of energy to the facility. Several industrial and commercial facilities are simulated using acquired electrical, heating, and cooling load data. Industrial and commercial utility rate structures are modeled after Southern California Edison and Southern California Gas Company tariffs and used to find energy costs for the simulated buildings and corresponding microturbine dispatch. Using these control strategies, building models, and utility rate models, a parametric study examining various generator characteristics is performed. An economic assessment of the distributed generation is then performed for both the microturbine generator and parametric study.;Without the ability to export electricity to the grid, the economic value of distributed generation is limited to reducing the individual costs that make up the cost of energy for a building. Any economic dispatch strategy must be built to reduce these individual costs. While the ability of distributed generation to reduce cost depends of factors such as electrical efficiency and operations and maintenance cost, the building energy demand being serviced has a strong effect on cost reduction. Buildings with low load factors can accept distributed generation with higher operating costs (low electrical efficiency and/or high operations and maintenance cost) due to the value of demand reduction. As load factor increases, lower operating cost generators are desired due to a larger portion of the building load being met in an effort to reduce demand. In addition, buildings with large thermal demand have access to the least expensive natural gas, lowering the cost of operating distributed generation. Recovery of exhaust heat from DG reduces cost only if the buildings thermal demand coincides with the electrical demand.;Capacity limits exist where annual savings from operation of distributed generation decrease if further generation is installed. For low operating cost generators, the approximate limit is the average building load. This limit decreases as operating costs increase. In addition, a high capital cost of distributed generation can be accepted if generator operating costs are low. As generator operating costs increase, capital cost must decrease if a positive economic performance is desired.
机译:与传统的中央发电相比,分布式发电可以提供许多好处,例如在减少排放的同时提高可靠性和效率。尽管有这些潜在的好处,但是除非降低能源成本,否则通常不购买分布式发电。可以设计经济调度策略,以使分布式发电技术降低整体设施的能源成本。在本文中,微涡轮发电机的调度采用了不同的经济控制策略,从而降低了设备的能源成本。使用获取的电,热和冷负荷数据模拟了一些工业和商业设施。工业和商业公用事业费率结构以南加州爱迪生和南加州天然气公司的关税为模型,并用于查找模拟建筑物和相应的微型涡轮机的能源成本。使用这些控制策略,构建模型和效用率模型,进行了检查各种发电机特性的参数研究。然后对微型涡轮发电机和参数研究都进行了分布式发电的经济评估;;由于无法将电力输出到电网,因此分布式发电的经济价值仅限于减少构成能源成本的单个成本用于建筑物。必须制定任何经济调度策略来减少这些个人成本。尽管分布式发电降低成本的能力取决于诸如电效率以及运营和维护成本等因素,但所服务的建筑能源需求对降低成本有很大影响。由于需求减少的价值,具有低负荷系数的建筑物可以接受具有较高运行成本(低电效率和/或较高的运行和维护成本)的分布式发电。随着负荷系数的增加,由于要满足大部分建筑负荷以减少需求,因此需要较低的运行成本发电机。此外,热需求大的建筑物可以使用最便宜的天然气,从而降低了分布式发电的运营成本。仅当建筑物的热需求与电力需求一致时,才可以从DG中回收废热,从而降低了成本。容量限制存在,如果安装了更多的发电机,则分布式发电的年节省量就会减少。对于低运营成本的发电机,近似极限是平均建筑物负荷。该限制随着运营成本的增加而降低。另外,如果发电机的运行成本低,则可以接受分布式发电的高资本成本。随着发电机运行成本的增加,如果需要积极的经济表现,则资本成本必须降低。

著录项

  • 作者

    Flores, Robert Joseph.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Economics General.;Engineering Mechanical.;Energy.;Engineering Aerospace.
  • 学位 M.S.
  • 年度 2013
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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