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Optimal Dispatch and Techno-economic Evaluation of Mixed AC and DC Distribution Networks with High Penetration of Photovoltaic Panels

机译:具有高渗透光伏板的混合交流和直流配电网的最佳调度和技术经济评价

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AC and DC hybrid power distribution can increase the flexibility of the power system, thereby increasing the consumption rate of renewable energy. Power electronic transformer (PET) is modeled as the key interface between AC and DC network connected at the bus of mid-voltage distribution system with high penetration of photovoltaic (PV) panels. This paper evaluates the cost-effectiveness of the PET-based AC and DC distribution network with power system reliability constraints. A combined optimization of PET configuration and operation is formulated as a two-stage optimization problem for minimizing the operating cost and power losses. The optimal configuration and operation of mixed AC and DC network are solved iteratively in the two-stage algorithm. The economic performance of PET-based network is compared to a corresponding AC distribution system. A 33-bus test system is simulated with distributed PVs and PETs installed at the buses of mid-voltage AC network. The simulation results show the merits of mixed AC and DC network in terms of operating cost and PV integration.
机译:AC和DC混合配电可以提高电力系统的灵活性,从而提高可再生能源的消耗率。电力电子变压器(PET)被建模为连接在高压配电系统总线上的AC和DC网络之间的关键接口,具有高渗透光伏(PV)面板。本文评估了具有电力系统可靠性约束的宠物基交流和直流配电网络的成本效益。宠物配置和操作的组合优化作为两级优化问题,以最小化操作成本和功率损耗。混合AC和DC网络的最佳配置和操作在两阶段算法中迭代地解决。将PET的网络的经济性能与相应的AC分配系统进行比较。使用分布式PVS和宠物在中压交流网络的总线上模拟33总线测试系统。仿真结果表明了在运营成本和PV集成方面的混合AC和DC网络的优点。

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