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Hierarchical coordination of a hybrid AC/DC smartgrid with central/distributed energy storage

机译:具有中央/分布式能源存储的混合AC / DC智能电网的分层协调

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This work describes a hybrid AC/DC Smart Grid distribution scheme installed at LEMUR microgrid laboratory. The control of the microgrid is carried out according to a hierarchical coordination considering the high level control. The configuration includes a microgrid (pG) connected to the main utility grid (MUG) by means of a solid state transformer (STT). The pG is formed by several nanogrids (nGs). All (nGs) are based on four wire configurations, as they are usually employed in AC distribution systems. However, the scheme is considered as a hybrid Smart Grid because the connection among different nanogrids and with the SST are DC connections. The SST is also equipped with a third port connected to a central energy storage system (CESS). The coordination between the different involved in the systems: the installed dispersed generators at nanogrid level, the nanogrids, the SST and the CESS has been implemented using a bottom-up hierarchical approach. Several configurations at nanogrid and microgrid levels are shown and analyzed. For making the coordination of the different elements of the microgrid, a fast power flow algorithm for estimating the state of the microgrid in real time was developed. In this paper the proposed structure is described paying special attention to the power flow algorithm. The results obtained with the power flow algorithm in simulations were validated at laboratory level.
机译:这项工作描述了LEMUR微电网实验室安装的AC / DC混合智能电网分配方案。微电网的控制是根据考虑了高级控制的分层协调来进行的。该配置包括通过固态变压器(STT)连接到主公用电网(MUG)的微电网(pG)。 pG由几个纳米网格(nG)形成。所有(nG)基于四线配置,因为它们通常用于交流配电系统中。但是,该方案被视为混合智能电网,因为不同纳米网格之间以及与SST的连接均为直流连接。 SST还配备了连接到中央储能系统(CESS)的第三个端口。系统中涉及的不同对象之间的协调:已使用自下而上的分层方法实现了在纳米网格级别安装的分散发电机,纳米网格,SST和CESS。显示并分析了纳米网格和微网格级别的几种配置。为了协调微电网的不同元素,开发了一种用于实时估计微电网状态的快速潮流算法。在本文中,对所提出的结构进行了描述,并特别注意了潮流算法。用能流算法在仿真中获得的结果在实验室水平上得到了验证。

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