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Microgrids Operation Based on Master–Slave Cooperative Control

机译:基于主从协同控制的微电网运行

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Low-voltage microgrids can be seen as the basic tiles of the smart grid patchwork owing to their capability to efficiently manage the distributed energy resources (DERs) in aggregate form. They can support the grid in terms of demand response, power quality, ride through capability, and at the same time, they can ensure electrical continuity to the loads, even in case of grid failure. This paper describes a simple and effective approach to manage microgrids by synergistic control of the power electronic interfaces acting therein, i.e., the utility interface (UI), installed at the point of common coupling with the utility and the energy gateways (EGs), interfacing the DERs with the distribution grid. The proposed master–slave control uses the UI as control master for the EGs. In grid-connected operation, the UI performs as a grid-supporting unit and dispatches active and reactive power references to the EGs so as to improve energy efficiency and power quality; in islanded operation, the UI performs as a grid-forming voltage source and ensures the power balance by exploiting every power source and energy storage unit available in the microgrid. This paper discusses the theoretical background, architecture, and algorithms of the proposed master–slave control and demonstrates the resulting microgrid performance by means of simulation and experimental results.
机译:低压微电网可被视为智能电网拼凑而成的基本要素,因为它们能够有效地管理总体形式的分布式能源(DER)。它们可以在需求响应,电能质量,穿越能力方面为电网提供支持,同时,即使在电网发生故障的情况下,它们也可以确保负载的电气连续性。本文描述了一种通过协同控制作用在其中的电力电子接口(即公用事业接口(UI))来管理微电网的简单有效的方法,该公用事业接口安装在与公用事业和能源网关(EG)共同耦合的点上,带配电网的DER。建议的主从控件使用UI作为EG的控件主。在并网运行中,用户界面作为电网支持单元,向有功电能分配有功和无功功率参考,以提高能效和电能质量。在孤岛式操作中,UI用作形成网格的电压源,并通过利用微电网中可用的每个电源和能量存储单元来确保电源平衡。本文讨论了提出的主从控制的理论背景,体系结构和算法,并通过仿真和实验结果证明了由此产生的微电网性能。

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