微电网
转换器
可控性
电力电子
网格
分布式发电
可靠性(半导体)
工程类
分布式电源
电力系统
储能
智能电网
控制工程
计算机科学
电气工程
分布式计算
功率(物理)
电子工程
可再生能源
电压
物理
量子力学
几何学
数学
应用数学
作者
Joan Rocabert,Álvaro Luna,Frede Blaabjerg,Pedro Rodríguez
标识
DOI:10.1109/tpel.2012.2199334
摘要
The enabling of ac microgrids in distribution networks allows delivering distributed power and providing grid support services during regular operation of the grid, as well as powering isolated islands in case of faults and contingencies, thus increasing the performance and reliability of the electrical system. The high penetration of distributed generators, linked to the grid through highly controllable power processors based on power electronics, together with the incorporation of electrical energy storage systems, communication technologies, and controllable loads, opens new horizons to the effective expansion of microgrid applications integrated into electrical power systems. This paper carries out an overview about microgrid structures and control techniques at different hierarchical levels. At the power converter level, a detailed analysis of the main operation modes and control structures for power converters belonging to microgrids is carried out, focusing mainly on grid-forming, grid-feeding, and grid-supporting configurations. This analysis is extended as well toward the hierarchical control scheme of microgrids, which, based on the primary, secondary, and tertiary control layer division, is devoted to minimize the operation cost, coordinating support services, meanwhile maximizing the reliability and the controllability of microgrids. Finally, the main grid services that microgrids can offer to the main network, as well as the future trends in the development of their operation and control for the next future, are presented and discussed.
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