Applied Energy 210 (2018) 1002–1016 Contents lists available at ScienceDirect Applied Energy journal homepage: www.elsevier.com/locate/apenergy A novel design of architecture and control for multiple microgrids with hybrid AC/DC connection a a,⇑ a b Pan Wu , Wentao Huang , Nengling Tai , Shuo Liang Department of Power Electrical Engineering, Shanghai Jiao Tong University, Shanghai, SH 200240, China Guangxi Electric Power Research Institute, Nanning, GX 530023, China highlights graphical a bstract Proposes an advanced microgrid interface based on MMC and energy storage system for multiple microgrids. Proposes a novel architecture for multiple microgrids with hybrid AC/DC connection. Proposes different control schemes for multiple microgrids under various operation conditions. The large-scale integration of distributed renewable energies in multiple microgrids is enhanced. The optimal use of distributed generators in multiple microgrids is realized. ar ti c l e i nf o ab stra ct Article history: Microgrid provides an effective approach to utilize distributed renewable energies (DREs). Given the Received 28 March 2017 ongoing transformation of distribution system with high penetration of DREs, coordinating and con- Received in revised form 13 July 2017 suming a large amount of distributed generators (DGs) within one single microgrid has become Accepted 14 July 2017 increasingly
Applied Energy – Elsevier
Published: Jan 15, 2018
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