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Potential-Based Analysis of Social Communication and Dist. Networks Springer NEW

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Item specifics

Condition
Brand New: A new, unread, unused book in perfect condition with no missing or damaged pages. See all condition definitionsopens in a new window or tab
Pages
172
Publication Date
2017-03-23
ISBN
9783319542881

About this product

Product Identifiers

Publisher
Springer International Publishing A&G
ISBN-10
3319542885
ISBN-13
9783319542881
eBay Product ID (ePID)
235400671

Product Key Features

Book Title
Potential-Based Analysis of Social, Communication, and Distributed Networks
Number of Pages
Xxvii, 172 Pages
Language
English
Publication Year
2017
Topic
Networking / General, General, Telecommunications, Applied
Illustrator
Yes
Genre
Mathematics, Computers, Technology & Engineering, Social Science
Author
Seyed Rasoul Etesami
Book Series
Springer Theses Ser.
Format
Hardcover

Dimensions

Item Weight
150.3 Oz
Item Length
9.3 in
Item Width
6.1 in

Additional Product Features

Dewey Edition
23
Number of Volumes
1 vol.
Dewey Decimal
006.754
Table Of Content
Introduction.- Notation and Mathematical Preliminaries.- Unbiased Quantized Consensus.- Metropolis Quantized Consensus.- Hegselmann-Krause Opinion Dynamics in Finite Dimensions.- Capacitated Selfish Replication Game.- Diffusion Games Over Social Networks.- Conclusions and Directions for Future Research.
Synopsis
Introduction.- Notation and Mathematical Preliminaries.- Unbiased Quantized Consensus.- Metropolis Quantized Consensus.- Hegselmann-Krause Opinion Dynamics in Finite Dimensions.- Capacitated Selfish Replication Game.- Diffusion Games Over Social Networks.- Conclusions and Directions for Future Research., This work makes major contributions to the thriving area of social, communication, and distributed networks by introducing novel methodologies and tools toward the study of the evolutionary behaviors of these networks, as well as their computational complexity and rates of convergence. By departing from the classical approaches and results in the literature, this work shows that it is possible to handle more complex and realistic nonlinear models where either the traditional approaches fail or lead to weak results. The author also develops several easily implementable algorithms, delivering excellent performance guarantees while running faster than those that exist in the literature. The study undertaken and the approaches adopted enable the analysis of the evolution of several different types of social and distributed networks, with the potential to apply to and resolve several other outstanding issues in such networks.
LC Classification Number
TK5101-5105.9

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