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Hybrid Microgrid Controller Analysis and Design for a Campus Grid

机译:校园网格的混合微电网控制器分析与设计

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Microgrids with Distributed Energy Resources (DERs) have proved to be a propitious alternative to the traditional distribution systems. This is due to the increased resiliency, efficiency and reliability offered by these grids. This paper discusses the design and operation of a microgrid and its associated controller for the Clemson University main campus. The virtual inertia has been emulated in the microgrid to make it closely resemble the one emulating a synchronous generator. A coordination controller has been developed for the systematic dispatch of Photovoltaic (PV) and Battery Energy Storage System (BESS). The microgrid has been sized to perform both grid-connected and two days of islanding operation. The designed grid exhibits a nearly seamless transition from the grid-connected mode to the islanded mode and vice versa. The system also successfully satisfies the IEEE Std 1547.4. A business case has also been developed for the proposed microgrid that suggests its implementation due to economic viability.
机译:已证明具有分布式能源资源(DERS)的微电网是传统分销系统的卓越替代品。这是由于这些网格提供的增强,效率和可靠性增加。本文讨论了克莱姆森大学主校园的微电网及其相关控制器的设计和运行。虚拟惯性已经在微电网中仿真,以使其与模拟同步发电机的一个紧密相似。已经开发了用于系统调度的光伏(PV)和电池储能系统(BESS)的协调控制器。 MicroGrid已大小以执行网格连接和两天的岛屿操作。设计的网格从网格连接模式到岛立模式呈现几乎无缝过渡,反之亦然。该系统还成功地满足了IEEE STD 1547.4。还为拟议的微电网制定了一个商业案例,该拟议的微电网表明其实施由于经济可行性。

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