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Resilient Distribution System by Microgrids Formation After Natural Disasters

IEEE Transactions on Smart Grid · 2015 · Vol. 7(2) · pp. 958–966
Chen ChenJianhui WangFeng QiuDongbo Zhao

Abstract

Microgrids with distributed generation (DG) provide a resilient solution in the case of major faults in a distribution system due to natural disasters. This paper proposes a novel distribution system operational approach by forming multiple microgrids energized by DG from the radial distribution system in real-time operations to restore critical loads from the power outage. Specifically, a mixed-integer linear program is formulated to maximize the critical loads to be picked up while satisfying the self-adequacy and operation constraints for the microgrids formation problem by controlling the ON/OFF status of the remotely controlled switch devices and DG. A distributed multiagent coordination scheme is designed via local communications for the global information discovery as inputs of the optimization, which is suitable for autonomous communication requirements after the disastrous event. The formed microgrids can be further utilized for power quality control and can be connected to a larger microgrid before the restoration of the main grids is complete. Numerical results based on modified IEEE distribution test systems validate the effectiveness of our proposed scheme.

Microgrid Control and OptimizationOptimal Power Flow DistributionSoftware-Defined Networks and 5GMicrogridDistributed generationDistributed computingPower (physics)Electric power systemComputer scienceInteger (computer science)Distributed power generationEvent (particle physics)Scheme (mathematics)
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References
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IEEE Transactions on Power Delivery · 1989 · 2,006 citations
Consensus Problems in Networks of Agents With Switching Topology and Time-Delays
IEEE Transactions on Automatic Control · 2004 · 12,614 citations
Consensus and Cooperation in Networked Multi-Agent Systems
Proceedings of the IEEE · 2007 · 10,218 citations
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