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Probabilistic method for the operation of three-phase unbalanced active distribution networks

机译:三相不平衡有源配电网运行的概率方法

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摘要

This study proposes a probabilistic multi-objective optimisation method for the operation of three-phase distribution networks incorporating active network management (ANM) schemes including coordinated voltage control and adaptive power factor control. The proposed probabilistic method incorporates detailed modelling of three-phase distribution network components and considers different operational objectives. The method simultaneously minimises the total energy losses of the lines from the point of view of distribution network operators and maximises the energy generated by photovoltaic (PV) cells considering ANM schemes and network constraints. Uncertainties related to intermittent generation of PVs and load demands are modelled by probability density functions (PDFs). Monte Carlo simulation method is employed to use the generated PDFs. The problem is solved using ɛ-constraint approach and fuzzy satisfying method is used to select the best solution from the Pareto optimal set. The effectiveness of the proposed probabilistic method is demonstrated with IEEE 13- and 34-bus test feeders.
机译:这项研究为三相配电网的运行提出了一种概率多目标优化方法,该方法结合了包括协调电压控制和自适应功率因数控制在内的主动网络管理(ANM)方案。所提出的概率方法结合了三相配电网络组件的详细建模,并考虑了不同的操作目标。从配电网络运营商的角度来看,该方法可同时将线路的总能量损失降至最低,并考虑到ANM方案和网络约束,可以使光伏(PV)电池所产生的能量最大化。通过概率密度函数(PDF)对与PV的间歇性产生和负荷需求有关的不确定性进行建模。采用蒙特卡洛模拟方法来使用生成的PDF。使用ɛ约束方法解决了该问题,并使用模糊满意的方法从Pareto最优集中选择了最优解。 IEEE 13总线和34总线测试馈线证明了所提出的概率方法的有效性。

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