Dynamic Modeling, Stability, and Control of Power Systems With Distributed Energy Resources: Handling Faults Using Two Control Methods in Tandem

Dynamic Modeling, Stability, and Control of Power Systems With Distributed Energy Resources: Handling Faults Using Two Control Methods in Tandem
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DOI:
10.1109/mcs.2018.2888680
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发表时间:
2018-04
期刊:
IEEE Control Systems
影响因子:
--
通讯作者:
T. Sadamoto;A. Chakrabortty;T. Ishizaki;J. Imura
T. Sadamoto;A. Chakrabortty;T. Ishizaki;J. Imura
中科院分区:
其他
文献类型:
--
作者:
T. Sadamoto;A. Chakrabortty;T. Ishizaki;J. Imura

文献摘要

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目前,世界各地的电力系统网络正在实施重大的基础设施变革,最大限度地提高可再生能源的渗透率,安装新的输电线路,增加灵活的负荷,并通过将电网分解为微电网来促进电力生产的独立性[1]。能源供应从大型中央发电站向小型生产商(如风力发电场、太阳能光伏发电场、屋顶光伏系统和统称为分布式能源(DER)或逆变器资源的储能系统)的转移正在迅速加速。数百个电力电子设备正在增加,在电网中创建数百个新的控制点。
Significant infrastructure changes are currently being implemented in power system networks around the world by maximizing the penetration of renewable energy, installing new transmission lines, adding flexible loads, and promoting independence in power production by disintegrating the grid into microgrids [1]. The shift of energy supply from large central generating stations to smaller producers, such as wind farms, solar photovoltaic (PV) farms, rooftop PV systems, and energy-storage systems collectively known as distributed energy resources (DERs) or inverter-based resources, is accelerating at a rapid pace. Hundreds of power electronic devices are being added, creating hundreds of new control points in the grid.