Distribution systems analysis uses techniques to simulate, analyse, and optimise power distribution systems. Together with automation, these techniques underpin the smart grid. Distribution systems are facing growing challenges, due to increasing demand as well as the rising shares of distributed and volatile renewable energy sources.
Distribution systems analysis uses techniques to simulate, analyse, and optimise power distribution systems. Together with automation, these techniques underpin the smart grid. Distribution systems are facing growing challenges, due to increasing demand as well as the rising shares of distributed and volatile renewable energy sources.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Juan M. Gers obtained his undergraduate degree as Electrical Engineer from the Universidad del Valle in Cali, Colombia in 1977. In 1981, he finished a master's degree in Power Systems Studies at the University of Salford in England, and his doctorate with research in distribution systems and automatization at the University of Strathclyde in Scotland in 1998. He was a professor at the Universidad del Valle in Colombia for more than 20 years and has been working as adjunct instructor at the Gonzaga University for more than 10 years. Dr. Gers served as the Vice Minister of Mines and Energy of Colombia in 2002. He is the author of Protection of Electricity Distribution Networks, is a Chartered Engineer of the IET and participates in several groups of the Power System Relaying and Control Committee of the IEEE. Dr. Gers is the founder and president of GERS, an engineering consultancy specializing in power systems, based in Florida, USA.
Inhaltsangabe
Chapter 1: Smart Grids overview Chapter 2: Distribution automation functions Chapter 3: Fundamentals of distribution system analysis Chapter 4: Short circuit calculation Chapter 5: Reliability of distribution systems Chapter 6: Reconfiguration and restoration of distribution systems Chapter 7: Voltage/VAR control Chapter 8: Harmonic analysis Chapter 9: Modern protection of distribution systems Chapter 10: Distributed generation and energy storage systems Chapter 11: Fundamentals on microgrid technology Chapter 12: Communications in Smart Grids Chapter 13: Interoperability concepts in power electric systems
Chapter 1: Smart Grids overview Chapter 2: Distribution automation functions Chapter 3: Fundamentals of distribution system analysis Chapter 4: Short circuit calculation Chapter 5: Reliability of distribution systems Chapter 6: Reconfiguration and restoration of distribution systems Chapter 7: Voltage/VAR control Chapter 8: Harmonic analysis Chapter 9: Modern protection of distribution systems Chapter 10: Distributed generation and energy storage systems Chapter 11: Fundamentals on microgrid technology Chapter 12: Communications in Smart Grids Chapter 13: Interoperability concepts in power electric systems
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