Planning, Control and Protection for Power Quality and Reliability Improvement in Smart Grids and Microgrids [PDF]
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The fast evolving technology has resulted in an extensive use of power electronics. The desire of making a grid network more intelligent can be fulfilled by these power electronics device. Based on the controller design and implementation, smartness feature can be improved.
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ANN-augmented adaptive droop/PI control for residential hybrid microgrids with IoT monitoring. [PDF]
Bahabri MO, Ramdas SK, Banawi HA.
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Nowadays, smart grids are becoming a topic of global interest, with many engineers and academics across the world addressing it as the enabling factor for the evolution of our society into a “smart society”. Smart grids are still at their infancy, however their theoretical background and the challenges they must withstand are known to engineers.
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Optimization of power management in PV-based smart grids using grid-support and grid-forming inverters. [PDF]
Bagdadee AH +4 more
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A stochastic model for dynamic reconfiguration of multi-microgrid networks under demand and supply uncertainties. [PDF]
Yahia Z, Gheith M.
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Microgrids as a Tool for Energy Self-Sufficiency. [PDF]
Bielecki S, Skoczkowski T, Wołowicz M.
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Resilient distributed model predictive control for cooperative microgrids under communication loss with demand response integration. [PDF]
Alghamdi B.
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Addressing lightning and market uncertainties in self-scheduling: A fuzzy-markov approach for smart grids. [PDF]
Benistan IS, Shahbazzadeh MJ, Eslami M.
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Optimization based load forecasting and demand management in smart building microgrids with Greylag Goose and Bi level graph models. [PDF]
Ahamed BS +6 more
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