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Flexibility evaluation of active distribution networks considering probabilistic characteristics of uncertain variables

机译:考虑不确定变量概率特征的主动配电网柔性评估

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摘要

The flexibility evaluation of distribution networks has attracted significant research attention with the increasing penetration of renewable energy. One particular gap in existing studies is that little attention has been paid to the probabilistic characteristics of uncertain regions. In this study, a novel sequential flexibility evaluation method is proposed based on the feasibility analysis of the uncertain region of photovoltaic active power and load demand. The model features the uncertain region with probabilistic characteristics, which is essential for analysing the impact of probabilistic characteristics of uncertain variables (PCUVs) on flexibility evaluation. The sequential direction matrix is adopted to reflect the major factor of flexibility shortage. The evaluation procedure is modelled as a bi-level optimisation problem. Demonstrated by the simulation results, the flexibility index is larger by considering the PCUV. Furthermore, the elements in the sequential direction matrix indicate that the photovoltaic power during midday is the major cause of flexibility shortage.
机译:随着可再生能源的普及,配电网络的灵活性评估已经引起了广泛的研究关注。现有研究中的一个特殊缺陷是,对不确定区域的概率特征的关注很少。在这项研究中,基于对光伏有功功率和负荷需求不确定区域的可行性分析,提出了一种新的顺序柔性评估方法。该模型具有具有概率特征的不确定区域,这对于分析不确定变量(PCUV)的概率特征对灵活性评估的影响至关重要。采用顺序方向矩阵来反映灵活性不足的主要因素。评估程序被建模为双层优化问题。仿真结果表明,考虑PCUV,柔韧性指数较大。此外,顺序方向矩阵中的元素表明,午间的光伏发电是柔韧性不足的主要原因。

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