
Graph Spectra for Complex Networks
Piet Van Mieghem(Author)
Cambridge University Press
Published on 2. December 2010
Book
Hardback
364 pages
978-0-521-19458-7 (ISBN)
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Description
Analyzing the behavior of complex networks is an important element in the design of new man-made structures such as communication systems and biologically engineered molecules. Because any complex network can be represented by a graph, and therefore in turn by a matrix, graph theory has become a powerful tool in the investigation of network performance. This self-contained 2010 book provides a concise introduction to the theory of graph spectra and its applications to the study of complex networks. Covering a range of types of graphs and topics important to the analysis of complex systems, this guide provides the mathematical foundation needed to understand and apply spectral insight to real-world systems. In particular, the general properties of both the adjacency and Laplacian spectrum of graphs are derived and applied to complex networks. An ideal resource for researchers and students in communications networking as well as in physics and mathematics.
More details
Language
English
Place of publication
Cambridge
United Kingdom
Target group
Professional and scholarly
Illustrations
29 b/w illus. 1 table
Dimensions
Height: 254 mm
Width: 180 mm
Thickness: 21 mm
Weight
870 gr
ISBN-13
978-0-521-19458-7 (9780521194587)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
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Piet Van Mieghem
Graph Spectra for Complex Networks
Book
09/2023
2nd Edition
Cambridge University Press
€64.50
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Additional editions

Piet Van Mieghem
Graph Spectra for Complex Networks
E-Book
01/2011
1st Edition
Cambridge University Press
€49.99
Available for download

Piet Van Mieghem
Graph Spectra for Complex Networks
E-Book
12/2010
1st Edition
Cambridge University Press
€42.99
Available for download
Person
Piet Van Mieghem is a Professor at the Delft University of Technology with a chair in telecommunication networks, and chairman of the Network Architectures and Services (NAS) section. His main research interests lie in the modeling and analysis of complex networks (such as biological, brain, social, infrastructural, etc. networks) and in new Internet-like architectures and algorithms for future communications networks.
Content
Preface; Acknowledgements; 1. Introduction; Part I. Spectra of Graphs: 2. Algebraic graph theory; 3. Eigenvalues of the adjacency matrix; 4. Eigenvalues of the Laplacian Q; 5. Spectra of special types of graphs; 6. Density function of the eigenvalues; 7. Spectra of complex networks; Part II. Eigensystem and Polynomials: 8. Eigensystem of a matrix; 9. Polynomials with real coefficients; 10. Orthogonal polynomials; List of symbols; Bibliography; Index.