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Proportioning wind, solar, and in-stream tidal electricity generating capacity to co-optimize multiple grid integration metrics

机译:按比例风,太阳能和流式潮汐发电能力共同优化多个网格集成度量

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摘要

With an increasing amount of electricity generation coming from renewable sources, integrating that variable output is of concern for electricity system reliability. This study investigates the proportioning of generating capacity between three co-located but uncorrelated variable renewable resources; wind, solar, and in-stream tidal, so that they complement each other and reduce grid integration costs. One year of resource data from various sites in the province of Nova Scotia, Canada was used. These data were analysed with respect to four metrics of importance to grid operators and electric utilities; coincident minimum and maximum power production, average power output, and ramp rates. These metrics were then combined, on an equal weighting basis, to find an "optimal" combination of generating capacities. The results were also compared to electrical load during the same year to determine the impact that increasing amounts of renewable generating capacity have on the required conventional dispatchable generating capacity. It was determined that a mix of installed generating capacities of 61% wind, 27% solar, and 12% in-stream tidal optimizes the energy, power, and ramp rate metrics. However, even with three independently varying resources, a large increase in renewable generating capacity results in only a small decrease in required dispatchable generation, due to a few coincident low renewable resources occurrences throughout the year.
机译:随着来自可再生源的越来越多的发电量,集成了该变量输出对电力系统可靠性有所关注。本研究调查了三个共同位于但不相关的可变可再生资源之间产生容量的比例;风,太阳能和流流潮,使它们相互补充并降低电网集成成本。加拿大省新斯科舍省各种地点的一年资源数据。对网格运营商和电力公用事业的四个度量分析了这些数据;重合最小和最大功率生产,平均功率输出和斜率。然后将这些度量组合在相等的加权基础上,以找到发电能力的“最佳”组合。结果也将结果与电负载相比,在该同一年内确定了增加可再生能力量对所需传统调度发电能力的影响。据确定,安装的发电能力为61%的风,27%太阳能和12%的流潮,优化了能量,功率和坡道度量。然而,即使具有三种独立不同的资源,由于全年少数重合的低可再生资源发生,因此即使只有三种独立的资源增加,也会导致所需的调度发电量小幅下降。

著录项

  • 来源
    《Applied Energy》 |2019年第1284期|69-77|共9页
  • 作者单位

    Dalhousie Univ Dept Mech Engn Renewable Energy Storage Lab Halifax NS Canada;

    Dalhousie Univ Dept Mech Engn Renewable Energy Storage Lab Halifax NS Canada;

    Dalhousie Univ Dept Mech Engn Renewable Energy Storage Lab Halifax NS Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Renewable; Wind; Solar; Tidal; Combination; Integration;

    机译:可再生;风;太阳能;潮;组合;集成;
  • 入库时间 2022-08-18 22:22:40

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