Computational Intelligence Applications in Smart Grids Enabling Methodologies for Proactive and Self Organizing Power Systems

“Computational Intelligence Applications in Smart Grids: Enabling Methodologies for Proactive and Self Organizing Power Systems” by Ahmed F. Zobaa, published by Imperial College Press in 2015, explores the integration of computational intelligence within smart grid technologies. This edition, comprising 245 pages, delves into the convergence of information and operational technologies applied to the electric grid, highlighting sustainable options for customers and enhanced security measures.
Readers will find a comprehensive examination of how smart grid technologies, such as advanced sensing systems and two-way communications, facilitate real-time actionable data for both system operators and end-users. The book addresses the transition from traditional electrical grids to self-organizing networks, emphasizing the role of computational intelligence in developing advanced control and monitoring systems. By focusing on these methodologies, the text aims to illustrate how the deployment of intelligent technologies can improve the efficiency and flexibility of electrical grids.
Official synopsis Publisher
This book considers the emerging technologies and methodologies of the application of computational intelligence to smart grids.
From a conceptual point of view, the smart grid is the convergence of information and operational technologies applied to the electric grid, allowing sustainable options to customers and improved levels of security. Smart grid technologies include advanced sensing systems, two-way high-speed communications, monitoring and enterprise analysis software, and related services used to obtain location-specific and real-time actionable data for the provision of enhanced services for both system operators (i.e. distribution automation, asset management, advanced metering infrastructure) and end-users (i.e. demand side management, demand response).
In this context, a crucial issue is how to support the evolution of existing electrical grids from static hierarchal systems to self-organizing, highly scalable and pervasive networks. Modern trends are oriented toward the employment of computational intelligence techniques for deploying advanced control, protection and monitoring architectures that move away from the older centralized paradigm to systems distributed across the field with an increasing pervasion of intelligence devices. The large-scale deployment of computational intelligence technologies in smart grids could lead to a more efficient tasks distribution amongst energy resources and, consequently, to a sensible improvement of the electrical grid flexibility.
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