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Distributed Optimal Operation of AC/DC Hybrid Distribution Network Considering Wind Power Uncertainty

机译:考虑风电不确定性的AC / DC混合分配网络的分布式最优运行

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In the future, AC/DC hybrid distribution networks show significant partition characteristics, and the continuous penetration of distributed power has strong uncertainty. Based on this, a distributed optimization model of AC/DC hybrid distribution network considering wind power uncertainty is proposed in this paper. The model aims at minimizing the power purchase cost of superior power grid (AC sub-network power grid) and the cost of electricity purchase and sale between AC and DC sub-networks, wind curtailment cost and micro gas turbine power generation cost. The uncertainty of probability distribution of typical scenarios is constrained by norm-1 and norm-inf. A data-driven two-stage distribution robust model is constructed and solved by column and constraint generation (CCG) algorithm. The distributed optimization of AC/DC hybrid distribution network takes voltage source converter (VSC) as coupling element, coordinates each sub-network distribution network through power consistency constraint. The alternating direction method of multipliers (ADMM) is used to carry out global coordination and iterative solution, so as to realize the power balance among all sub-networks. Finally, case studies are conducted to show the performance of the proposed model.
机译:在未来,AC / DC混合分配网络显示出显着的分区特性,分布式功率的连续渗透具有很强的不确定性。基于此,提出了考虑风电不确定性的AC / DC混合分布网络的分布式优化模型。该模型旨在最大限度地减少卓越电网(AC子网电网电网)的功率购买成本以及AC和DC子网之间的电力购买和销售成本,风缩小成本和微燃气涡轮发电成本。典型方案概率分布的不确定性受符号1和NOMM-INF的约束。通过列和约束生成(CCG)算法构造和解决数据驱动的两级分布鲁棒模型。 AC / DC混合分配网络的分布式优化将电压源转换器(VSC)作为耦合元件,通过功率一致性约束坐标。乘法器(ADMM)的交替方向方法用于进行全局协调和迭代解决方案,以实现所有子网中的功率平衡。最后,进行案例研究以显示所提出的模型的性能。

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