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Methods to ensure the adequate primary frequency response of low inertia power systems.

机译:确保低惯性电力系统足够的初级频率响应的方法。

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摘要

Power systems are changing and the trend toward renewable generation, lightweight gas turbines, and electronic load has resulted in systems with lower inertia and reduced governor response. The expected continuation of this decline motivates research on economical methods to ensure primary frequency response (PFR) adequacy and prevent frequency-related emergency actions. This dissertation describes both demand-side and generation-side methods for PFR improvement. Specifically, the commitment of autonomous interruptible load, the adjustment of governor gain settings, and the curtailment of resources are described. For these methods, the choice of the PFR resources is centrally coordinated, but the resource control actions are autonomous and based on local frequency measurements. Costs are attributed to the resources/control-decisions and minimum-cost optimization problems are formulated with nonlinear PFR constraints that require the time-domain simulation of a differential and algebraic equation (DAE) model of the system. Tractable iterative solution approaches, in which rapidly solvable linear approximations of the nonlinear problems are formulated, are proposed. For large systems, the burden of the iterative methods are further reduced through sensitivity-based estimation. This estimation exploits the near-linear power-sensitivity of the system, the similarity of electrically close buses, and the structure of a DAE power system model to accurately capture the temporal and spatial dependence of a PFR resource's contribution toward meeting a constraint. The computational benefits of the sensitivity-based estimates are demonstrated on systems with a large number of resources and the results show that the reductions in computational burden come with little increase in solution costs.
机译:电力系统正在发生变化,可再生能源发电,轻型燃气轮机和电子负载的趋势导致系统的惯性降低,调速器响应降低。这种下降的持续预期促使人们对经济方法进行研究,以确保基本频率响应(PFR)足够并防止与频率有关的紧急行动。本文介绍了需求侧方法和发电侧方法来提高PFR。具体来说,描述了自主可中断负载的承诺,调速器增益设置的调整以及资源的缩减。对于这些方法,PFR资源的选择是集中协调的,但是资源控制动作是自主的,并基于本地频率测量。成本归因于资源/控制决策,最小成本优化问题由非线性PFR约束条件制定,需要对系统的微分和代数方程(DAE)模型进行时域仿真。提出了一种可迭代的迭代求解方法,其中提出了非线性问题的可快速求解的线性近似。对于大型系统,可通过基于灵敏度的估计进一步减少迭代方法的负担。该估计利用系统的近线性功率敏感性,电封闭总线的相似性以及DAE电力系统模型的结构来准确捕获PFR资源在满足约束条件方面的时间和空间依赖性。基于灵敏度的估计的计算优势在具有大量资源的系统上得到了证明,结果表明,计算负担的减少几乎没有解决方案成本的增加。

著录项

  • 作者

    Bhana, Rajesh.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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