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Comprehensive evaluation of voltage stability based on EW-AHP and Fuzzy-TOPSIS

机译:基于EW-AHP和Fuzzy-TOPSIS的电压稳定性综合评估

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摘要

Large-scale voltage collapse incidences, which result in power outages over large regions and extensive economic losses, are presently common occurrences worldwide. Therefore, the voltage stability analysis of power systems has become a topic of increasing interest. This paper firstly presents a comprehensive evaluation method for conducting static and transient voltage stability analysis in electric power systems. To overcome the limitations associated with single-index systems in the evaluation of voltage stability, the analysis approach employs a multi-index system with four primary criteria based on separate analysis methods with ten sub-criteria based on individual indices. In addition, this paper proposes a comprehensive method for establishing index weights, which combines the subjective analytic hierarchy process weighting method and the objective entropy weighting method. An innovative index-weight optimization method based on the Lagrange conditioned extreme value is presented and sensitivity analysis is applied to test the robust of the proposed method. Finally, Fuzzy-TOPSIS is employed to rank the voltage buses of a power system as the final results, considering system functionality and proportionality. The results obtained for an actual power grid in Hami City, China demonstrate that the proposed method represents an effective approach for determining the weakest bus in power systems.
机译:当前,在世界范围内普遍发生大规模的电压崩溃事件,其导致大区域的电力中断和广泛的经济损失。因此,电力系统的电压稳定性分析已成为人们越来越关注的话题。本文首先提出了一种用于电力系统中静态和暂态电压稳定性分析的综合评估方法。为了克服与单指标系统在电压稳定性评估中的局限性,该分析方法采用了一种多指标系统,该系统具有基于单独分析方法的四个主要标准,以及基于各个指标的十个子标准。此外,本文提出了一种综合的指标权重确定方法,该方法结合了主观分析层次过程加权方法和客观熵加权方法。提出了一种基于拉格朗日条件极值的创新指标权重优化方法,并通过敏感性分析来检验该方法的鲁棒性。最后,考虑系统功能和比例,采用Fuzzy-TOPSIS对电力系统的电压母线进行排序,作为最终结果。在中国哈密市的实际电网中获得的结果表明,该方法是确定电力系统中最弱总线的有效方法。

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