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Graph Theory Applications to Deregulated Power Systems

✍ Scribed by Ricardo Moreno Chuquen, Harold R. Chamorro


Publisher
Springer International Publishing;Springer
Year
2021
Tongue
English
Leaves
62
Series
SpringerBriefs in Electrical and Computer Engineering
Edition
1st ed.
Category
Library

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✦ Synopsis


This book provides a detailed description of network science concepts applied to power systems and electricity markets, offering an appropriate blend of theoretical background and practical applications for operation and power system planning. It discusses an approach to understanding power systems from a network science perspective using the direct recognition of the interconnectivity provided by the transmission system. Further, it explores the network properties in detail and characterizes them as a tool for online and offline applications for power system operation. The book includes an in-depth explanation of electricity markets problems that can be addressed from a graph theory perspective. It is intended for advanced undergraduate and graduate students in the fields of electric energy systems, operations research, management science and economics. Practitioners in the electric energy sector also benefit from the concepts and techniques presented here.

✦ Table of Contents


Front Matter ....Pages i-ix
Introduction (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 1-4
Topological Characterization of Power Systems Networks (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 5-8
Identification of Multiple Subnetworks (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 9-17
Network Robustness for Power Systems (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 19-26
Security Strategies Applications (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 27-41
Cyber Physical Systems Security for the Smart Grid (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 43-49
Conclusions (Ricardo Moreno Chuquen, Harold R. Chamorro)....Pages 51-53
Back Matter ....Pages 55-58

✦ Subjects


Engineering; Power Electronics, Electrical Machines and Networks; Energy Systems; Graph Theory; Applications of Graph Theory and Complex Networks


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