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Compartmentalization Strategy for the Optimal Economic Operation of a Hybrid AC/DC Microgrid

机译:混合AC / DC微电网的最佳经济运行的分区化策略

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In this paper, a compartmentalization strategy is proposed for the economic operation of a hybrid AC/DC microgrid. The hybrid AC/DC microgrid will be compartmentalized into several independently controlled and coordinated AC and DC nanogrids. Accordingly, the optimal economic operation of the microgrid consists of two segments, including the optimal power sharing among local DERs in individual nanogrids and the optimal power sharing among interconnected nanogrids. For each AC/DC nanogrid, the optimal power sharing and frequency/voltage restoration are realized simultaneously without the need for any real-time communication. In the compartmentalized microgrid, each nanogrid will communicate with neighboring nanogrids through a sparse communication network to regulate power exchanges among nanogrids. In islanded mode, incremental costs of nanogrids are unified for realizing the optimal economic operation of the microgrid. In grid-connected mode, the external electricity price (i.e., purchase/sale electricity price set by the utility grid) is the desired incremental cost, which would be imposed on some pinned nanogrids and propagated among the remaining nanogrids. Then, the optimal power sharing of nanogrids within the grid-connected microgrid would be modeled as a pinning synchronization problem. The proposed compartmentalization strategy ensures that the optimal economic operation of the hybrid AC/DC microgrid is achieved under both island and grid-connected modes while the utilized communication structure is simplified and the dependency on communication networks is reduced. The performance of the proposed compartmentalization strategy is tested and verified through time-domain simulations in PSCAD/EMTDC for a hybrid AC/DC microgrid located at Illinois Institute of Technology (IIT).
机译:本文提出了杂交AC / DC微电网的经济运作的分区化策略。将杂交AC / DC MicroGrid划分为几种独立控制和协调的AC和DC纳米格栅。因此,微电网的最佳经济运算由两个段组成,包括在各个纳米格栅中的本地DER之间的最佳功率共享以及相互连接的纳米格栅之间的最佳功率共享。对于每个AC / DC纳米格栅,最佳功率共享和频率/电压恢复同时实现,而无需任何实时通信。在划分的微电网中,每个纳米格栅将通过稀疏通信网络与相邻的纳米格栅进行通信,以调节纳米格栅之间的功率交换。在岛屿模式中,纳米格栅的增量成本是统一的,以实现微电网的最佳经济运行。在网格连接模式下,外部电价(即,效用网格设定的购买/销售电力价格)是所需的增量成本,这将施加在一些固定的纳米格栅并在剩余的纳米格栅中传播。然后,将网格连接的微电网内的纳米格栅的最佳功率共享将被建模为钉扎同步问题。所提出的划分策略确保了在岛和网格连接模式下实现了混合AC / DC微电网的最佳经济运行,而简化了使用的通信结构并且减少了对通信网络的依赖性。通过PSCAD / EMTDC中的时域模拟来测试和验证所提出的划分策略的性能,用于位于伊利诺伊州理工学院(IIT)的混合AC / DC Microgrid。

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