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Power flow calculation for unbalanced three-phase distribution network with DGs based on phase-sequence hybrid modeling

机译:基于相序混合建模的DGS不平衡三相分配网络电流计算

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With many distributed generations (DGs) connected to distribution networks, the traditional power flow methods are difficult to deal with PQ(V)-node, PV-node and PI-node types DGs. Therefore, in this paper, a novel power flow algorithm for unbalanced three-phase distribution networks with DGs based on phase-sequence hybrid modeling is proposed. By using the phase-sequence hybrid modeling method, three-phase load models and parameter models of distribution network are established. And combined the special topological structure of distribution network and the three-sequence decoupling-compensation models of unsymmetrical branches with the path-loop circuit analysis method, an effective power flow algorithm for unbalanced three-phase distribution networks is proposed. Then, kinds of DGs are divided into PQ-node, PQ(V)-node, PV-node and PI-node types DGs, their calculation models are derived in detail and can be simply integrated into the proposed power flow algorithm of distribution networks. Test example results show that the proposed method possesses good convergence and efficiency of processing DGs, furthermore, it is verified from the simulation results that robustness and usefulness of the proposed algorithm.
机译:对于连接到分配网络的许多分布式代代(DGS),传统的电流方法难以处理PQ(v) - Node,PV节点和PI节点类型DGS。因此,提出了一种基于相序混合建模的DGS不平衡三相分配网络的新型电力流量算法。通过使用相位序列混合建模方法,建立了三相负载模型和分配网络的参数模型。并结合了分配网络的特殊拓扑结构和与路径环路分析方法的非对称分支的三序解耦补偿模型,提出了一种用于不平衡三相分配网络的有效电流算法。然后,将各种DGS分为PQ节点,PQ(v) - Node,PV-node和Pi节点类型DGS,它们的计算模型得到了详细的推导,并且可以简单地集成到所提出的分发网络的电力流量算法中。测试示例结果表明,该方法具有良好的收敛性和加工DG的效率,此外,从模拟结果验证了所提出的算法的鲁棒性和有用性的仿真结果。

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