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The welfare effects of integrating renewable energy into electricity markets.

机译:将可再生能源纳入电力市场的福利影响。

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摘要

The challenges of deploying more renewable energy sources on an electric grid are caused largely by their inherent variability. In this context, energy storage can help make the electric delivery system more reliable by mitigating this variability. This thesis analyzes a series of models for procuring electricity and ancillary services for both individuals and social planners with high penetrations of stochastic wind energy.;The results obtained for an individual decision maker using stochastic optimization are ambiguous, with closed form solutions dependent on technological parameters, and no consideration of the system reliability.;The social planner models correctly reflect the effect of system reliability, and in the case of a Stochastic, Security Constrained Optimal Power Flow (S-SC-OPF or SuperOPF), determine reserve capacity endogenously so that system reliability is maintained. A single-period SuperOPF shows that including ramping costs in the objective function leads to more wind spilling and increased capacity requirements for reliability. However, this model does not reflect the inter temporal tradeoffs of using Energy Storage Systems (ESS) to improve reliability and mitigate wind variability.;The results with the multiperiod SuperOPF determine the optimum use of storage for a typical day, and compare the effects of collocating ESS at wind sites with the same amount of storage (deferrable demand) located at demand centers. The collocated ESS has slightly lower operating costs and spills less wind generation compared to deferrable demand, but the total amount of conventional generating capacity needed for system adequacy is higher. In terms of the total system costs, that include the capital cost of conventional generating capacity, the costs with deferrable demand is substantially lower because the daily demand profile is flattened and less conventional generation capacity is then needed for reliability purposes.;The analysis also demonstrates that the optimum daily pattern of dispatch and reserves is seriously distorted if the stochastic characteristics of wind generation are ignored.
机译:在电网上部署更多可再生能源的挑战主要是由其固有的可变性引起的。在这种情况下,能量存储可以通过减轻这种可变性来帮助使电力输送系统更加可靠。本文分析了针对随机风能渗透率高的个人和社会计划者的一系列电力和辅助服务采购模型。;使用随机优化的个人决策者所获得的结果是模棱两可的,取决于技术参数的封闭式解决方案;并且不考虑系统可靠性。;社交计划程序模型正确反映了系统可靠性的影响,并且在随机,安全约束的最佳潮流(S-SC-OPF或SuperOPF)的情况下,内生确定备用容量保持系统可靠性。单周期SuperOPF显示,在目标函数中包含斜坡成本会导致更多的风洒和对可靠性的更高容量要求。但是,该模型并未反映出使用储能系统(ESS)来提高可靠性和减轻风速变化的时间折衷;多期SuperOPF的结果确定了典型一天的最佳储能使用,并比较了将ESS配置在风场,并在需求中心存储相同数量的存储(可延迟需求)。与可延期的需求相比,并置的ESS具有较低的运营成本,并且减少了较少的风力发电,但是系统充足性所需的常规发电能力总量较高。就总系统成本(包括常规发电能力的资本成本)而言,具有可延期需求的成本大大降低,因为日需求曲线趋于平坦,因此出于可靠性目的需要较少的常规发电能力。如果忽略风力发电的随机特征,则最优的调度和储备的每日模式会严重失真。

著录项

  • 作者

    Lamadrid, Alberto J.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Energy.;Economics General.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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