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The aim of the smart electric energy grid is to improve efficiency,
flexibility, and stability of the electric energy generation and
distribution system, with the ultimate goal being the added value
of energy-related services to the end-consumer and to facilitate
energy generation and prudent consumption toward energy efficiency.
New technologies, such as networks and sensors, are combined with
consumer behaviour to create a complex eco-system in which many
factors interact. This book gives some structure to the complex
ecosystem and surveys key research problems that have shaped the
area. The emphasis is on the presentation of the control and
optimization methodology used in approaching each of these
problems. This methodology spans convex and linear optimization
theory, game theory, and stochastic optimization. Modeling and
Optimization of the Smart Grid Ecosystem serves as a reference for
researchers wishing to understand the fundamental principles and
research problems underpinning the smart grid ecosystem, and the
main mathematical tools used to model and analyze such systems.
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