4.8 Article

Real Time Operation of Smart Grids via FCN Networks and Optimal Power Flow

Journal

IEEE TRANSACTIONS ON INDUSTRIAL INFORMATICS
Volume 8, Issue 4, Pages 944-952

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TII.2012.2205391

Keywords

Active management; demand side management; energy management systems; fuzzy clustering; genetic algorithms; neural networks; real time power market; smart grid

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This paper proposes an Energy Management System for the optimal operation of Smart Grids and Microgrids, using Fully Connected Neuron Networks combined with Optimal Power Flow. An adaptive training algorithm based on Genetic Algorithms, Fuzzy Clustering and Neuron-by-Neuron Algorithms is used for generating new clusters and new neural networks. The proposed approach, integrating Demand Side Management and Active Management Schemes, allows significant enhancements in energy saving, customers' active participation in the open market and exploitation of renewable energy resources. The effectiveness of the proposed Energy Management System and adaptive training algorithm is verified on a 23-bus 11 kV microgrid.

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