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Fischer-Burmeister-Based Method for Calculating Equilibrium Points of Droop-Regulated Microgrids

机译:基于Fischer-Burmeister的下垂调节微电网平衡点计算方法

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摘要

This paper gives theoretical foundation to a procedure for modeling in a simply way the behavior of a droop-regulated islanded microgrid when, due to reserve scheduling considerations, the power reserves might be exhausted. The main problem observed for computing the operating point of those microgrids is that the droop formulation that is to be entered in the computation depends on the knowledge of the final result, which indeed means that the solution by means of Newton-Raphson-like methods is hindered. The proposed procedure reduces the complexity by formulating the problem as a complementarity problem. A discussion is offered then on the specific problem of droop formulation: two states are possible (with and without power limit reached), with the particularity that the power must be considered constant only when the power limit is reached, whereas the frequency can freely vary in both states, searching for an equilibrium in the load share among all the generation units endowed with droop regulation. Further, the problem is simplified by resorting to the use of Fischer-Burmeister NCP-functions (NCP for nonlinear complementarity problem), which substitutes the piecewise-defined droop function by an only scalar function (Fischer-Burmeister function) that makes the problem tractable to be solved by Newton-Raphson-like methods. The paper concludes with an exposition of numerical simulations in which the consequences of considering the power exhaustion on stability and operating points are demonstrated.
机译:本文为以下降方式调节的孤岛微电网的行为建模提供了简单的理论基础,该过程由于储备调度的考虑而可能会耗尽电力。在计算这些微电网的工作点时观察到的主要问题是要在计算中输入的下垂公式取决于最终结果的知识,这实际上意味着通过类似牛顿-拉夫森方法的解决方案是受阻。拟议的程序通过将问题表述为互补问题来降低复杂度。然后讨论了下垂公式化的具体问题:两种状态都是可能的(达到和不达到功率极限),其特殊之处在于只有在达到功率极限时才必须将功率视为恒定,而频率可以自由变化在这两种状态下,在所有具有下垂调节能力的发电单元之间寻找负载分担的平衡。此外,通过使用Fischer-Burmeister NCP函数(用于非线性互补问题的NCP)简化了问题,该函数将分段定义的下垂函数替换为仅使问题易于解决的标量函数(Fischer-Burmeister函数)。可以通过类似牛顿-拉夫森的方法来解决。本文以数值模拟为结尾,其中展示了考虑功率消耗对稳定性和工作点的影响。

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  • 来源
    《Power Systems, IEEE Transactions on》 |2012年第2期|p.959-967|共9页
  • 作者

    Diaz G.;

  • 作者单位
  • 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

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