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Opportunities and Benefits for Increasing Transmission Capacity between the US Eastern and Western Interconnections

机译:美国东部和西部互连网之间增加传输容量的机会和好处

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摘要

Historically, the primary justification for building wide-area transmission lines in the US and around the world has been based on reliability and economic criteria. Today, the influence of renewable portfolio standards (RPS), Environmental Protection Agency (EPA) regulations, transmission needs, load diversity, and grid flexibility requirements drives interest in high capacity wide-area transmission. By making use of an optimization model to perform long-term (15 years) co-optimized generation and transmission expansion planning, this work explored the benefits of increasing transmission capacity between the US Eastern and Western Interconnections under different policy and futures assumptions. The model assessed tradeoffs between investments in cross-interconnection HVDC transmission, AC transmission needs within each interconnection, generation investment costs, and operational costs, while satisfying different policy compliance constraints. Operational costs were broken down into the following market products: energy, up-/down regulation reserve, and contingency reserve. In addition, the system operating flexibility requirements were modeled as a function of net-load variability so that the flexibility of the non-wind/non-solar resources increases with increased wind and solar investment. In addition, planning reserve constraints are imposed under the condition that they be deliverable to the load. Thus, the model allows existing and candidate generation resources for both operating reserves and deliverable planning reserves to be shared throughout the interconnections, a feature which significantly drives identification of least-cost investments. This model is used with a 169-bus representation of the North American power grid to design four different high-capacity wide-area transmission infrastructures. Results from this analysis suggest that, under policy that imposes a high-renewable future, the benefits of high capacity transmission between the Eastern and Western Interconnections outweigh its cost. A sensitivity analysis is included to test the robustness of each design under different future assumptions and approximate upper and lower bounds for cross-seam transmission between the Eastern and Western Interconnections.
机译:从历史上看,在美国和世界范围内构建广域传输线的主要理由是基于可靠性和经济标准。如今,可再生能源投资组合标准(RPS),环境保护局(EPA)法规,输电需求,负载分集和电网灵活性要求的影响促使人们对大容量广域输电产生了兴趣。通过使用优化模型执行长期(15年)共同优化的发电和输电扩容计划,这项工作探索了在不同的政策和未来假设下增加美国东西方互连网之间的输电容量的好处。该模型评估了交叉互连高压直流输电投资,每个互连中的交流输电需求,发电投资成本和运营成本之间的权衡,同时满足了不同的政策合规性约束。运营成本细分为以下市场产品:能源,上下调节储备和应急储备。此外,系统运行灵活性要求被建模为净负载变化的函数,因此非风/非太阳能资源的灵活性随风能和太阳能投资的增加而增加。此外,在计划储备约束可交付给负载的条件下强加计划储备约束。因此,该模型允许在整个互连过程中共享运营储备和可交付计划储备的现有和候选生成资源,该功能极大地推动了对最低成本投资的识别。该模型与北美电网的169总线代表一起使用,可以设计四种不同的大容量广域传输基础设施。该分析的结果表明,在强加可再生未来的政策下,东西方互连网之间进行高容量传输的好处超过了其成本。包括敏感性分析,以测试每种设计在不同未来假设下的稳健性,以及东部和西部互连之间跨接缝传输的近似上限和下限。

著录项

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Electrical engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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