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Ecological Uniqueness for Understanding Line Importance in Power Grids

机译:理解电网中的重要性的生态唯一性

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The identification of critical components in electric power grids is an important challenge power engineers face. Similarly, many ecologists face the challenge of identifying important species in food web networks. Drawing similarities between power grid networks and food web networks, this study utilizes proposed identification methods from ecology literature to identify critical components in electric power grids. These ecological methods used include measures of Sum of the Trophic Overlap (STO) and Weighted Trophic Overlap (WTO). We also study a method proposed from power engineering literature that uses the Normalized Line Outage Distribution Factor (NLODF) to compare the different methods. The intention of this study is to determine if bio-inspiration in criticality metrics provides a feasible tool to use in power grid analysis. The proposed engineering method utilizing NLODF is found to be more accurate in identifying critical lines in power grids when considering all lines in the grid. However, the ecological metric STO is found to be as good as NLODF when considering the top 10,20, or 30% of lines. STO was the most accurate metric in the largest grid analyzed, suggesting STO may be more accurate in larger grids. The comparable performance of the ecological and engineering methods suggests the ecological methods can be used to accurately identify critical components in electric power grids.
机译:识别电力电网中的关键部件是一个重要的挑战电力工程师面临。同样,许多生态学家面临着识别食品网络网络中重要物种的挑战。本研究利用生态文献的建议识别方法绘制电网网络和食品网络网络之间的相似之处来识别电力网格中的关键部件。使用这些生态方法包括营养途径(STO)和加权营养重叠(WTO)的总和的措施。我们还研究了一种方法,从工程文献中提出的方法,该方法使用标准化的线路中断分布因子(NLODF)来比较不同的方法。本研究的目的是确定临界度量中的生物启发是否提供了用于电网分析的可行工具。发现利用NLODF的建议的工程方法在考虑网格中的所有线路时识别电网中的临界线更准确。然而,当考虑到前10,20或30%的线路时,发现生态度量标准STO与NLODF一样好。 STO是分析最大网格中最精确的度量标准,表明STO在较大的网格中可能更准确。生态和工程方法的可比性表明,可以使用生态学方法来准确地识别电网中的关键部件。

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