Eigenvalue Problems in Power Systems
Eigenvalue Problems in Power Systems
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- More about Eigenvalue Problems in Power Systems
The book provides a comprehensive taxonomy of non-symmetrical eigenvalues problems applied to power systems, based on matrix pencils and illustrated with examples. It discusses numerical methods for solving large-scale problems, with attention to performance and scalability, and is aimed at researchers and students in Electrical & Computer Science Engineering.
Format: Paperback / softback
Length: 362 pages
Publication date: 25 September 2023
Publisher: Taylor & Francis Ltd
The book presents a comprehensive taxonomy of non-symmetrical eigenvalue problems as applied to power systems. It establishes a foundation on the mathematical concept of "matrix pencils" (MPs), encompassing both regular and singular MPs, to address eigenvalue problems. Each eigenvalue problem is accompanied by a diverse range of examples derived from electrical circuits, power system models, and controllers, along with relevant data presented in the appendices. The book delves into numerical methods for solving all considered eigenvalue problems, with a particular emphasis on large-scale challenges. It also pays close attention to the performance and scalability of the methodologies employed. The intended audience for this book includes researchers and graduate students pursuing studies in Electrical & Computer Science Engineering, both taught and research Master's programs, as well as PhD programs. It serves as a valuable resource for understanding eigenvalue problems in electrical power systems, presenting numerical examples that apply mathematical techniques to study small signal stability problems in realistic and large electrical power systems. The book offers detailed and in-depth analysis, encompassing non-linear and other advanced aspects, to provide a strong theoretical foundation and advanced numerical techniques essential for the secure operation of power systems. Additionally, it provides a comprehensive set of illustrative examples that reinforce theoretical discussions and enhance the understanding of the subject matter.
Weight: 453g
Dimension: 234 x 156 (mm)
ISBN-13: 9780367693022
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