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Transmission Expansion Planning with Large Scale Renewable Resource Integration.

机译:具有大规模可再生资源集成的传输扩展计划。

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摘要

Due to economic and environmental reasons, several states in the United States of America have a mandated renewable portfolio standard which requires that a certain percentage of the load served has to be met by renewable resources of energy such as solar, wind and biomass. Renewable resources provide energy at a low variable cost and produce less greenhouse gases as compared to conventional generators. However, some of the complex issues with renewable resource integration are due to their intermittent and non-dispatchable characteristics. Furthermore, most renewable resources are location constrained and are usually located in regions with insufficient transmission facilities. In order to deal with the challenges presented by renewable resources as compared to conventional resources, the transmission network expansion planning procedures need to be modified. New high voltage lines need to be constructed to connect the remote renewable resources to the existing transmission network to serve the load centers. Moreover, the existing transmission facilities may need to be reinforced to accommodate the large scale penetration of renewable resource.;This thesis proposes a methodology for transmission expansion planning with large-scale integration of renewable resources, mainly solar and wind generation. An optimization model is used to determine the lines to be constructed or upgraded for several scenarios of varying levels of renewable resource penetration. The various scenarios to be considered are obtained from a production cost model that analyses the effects that renewable resources have on the transmission network over the planning horizon. A realistic test bed was created using the data for solar and wind resource penetration in the state of Arizona. The results of the production cost model and the optimization model were subjected to tests to ensure that the North American Electric Reliability Corporation (NERC) mandated N-1 contingency criterion is satisfied. Furthermore, a cost versus benefit analysis was performed to ensure that the proposed transmission plan is economically beneficial.
机译:由于经济和环境原因,美利坚合众国一些州制定了强制性的可再生能源投资组合标准,该标准要求一定比例的服务负荷必须由太阳能,风能和生物质能等可再生能源来满足。与传统发电机相比,可再生资源以较低的可变成本提供能源,并产生较少的温室气体。但是,可再生资源整合中的一些复杂问题是由于其间歇性和不可调度的特性。此外,大多数可再生资源都受到位置的限制,通常位于传输设施不足的地区。与传统资源相比,为了应对可再生资源带来的挑战,传输网络扩展规划程序需要进行修改。需要构建新的高压线,以将远程可再生资源连接到现有的传输网络,以为负载中心服务。此外,可能需要加强现有的输电设施,以适应可再生资源的大规模渗透。本论文提出了一种以大规模整合可再生资源(主要是太阳能和风能)的输电扩展规划方法。优化模型用于确定可再生资源渗透水平不同的几种情况下要建造或升级的生产线。可以从生产成本模型中获得要考虑的各种方案,该模型分析了可再生资源在计划范围内对传输网络的影响。使用亚利桑那州太阳能和风能资源渗透的数据创建了一个实际的测试台。对生产成本模型和优化模型的结果进行了测试,以确保满足北美电力可靠性公司(NERC)规定的N-1应急标准。此外,进行了成本与收益分析,以确保建议的传输计划具有经济效益。

著录项

  • 作者

    Hariharan, Sruthi.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.;Energy.
  • 学位 M.S.
  • 年度 2012
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:19

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