Algorithms and Dynamical Models for Communities and Reputation in Social Networks Algorithms and Dynamical Models for Communities and Reputation in Social Networks

Algorithms and Dynamical Models for Communities and Reputation in Social Networks

    • $119.99
    • $119.99

Publisher Description

A persistent problem when finding communities in large complex networks is the so-called resolution limit. This thesis addresses this issue meticulously, and introduces the important notion of resolution-limit-free. Remarkably, only few methods possess this desirable property, and this thesis puts forward one such method. Moreover, it discusses how to asses whether communities can occur by chance or not. One aspect that is often ignored in this field is treated here: links can also be negative, as in war or conflict. Besides how to incorporate this in community detection, it also examines the dynamics of such negative links, inspired by a sociological theory known as social balance. This has intriguing connections to the evolution of cooperation, suggesting that for cooperation to emerge, groups often split in two opposing factions. In addition to these theoretical contributions, the thesis also contains an empirical analysis of the effect of trading communities on international conflict, and how communities form in a citation network with positive and negative links.

GENRE
Science & Nature
RELEASED
2014
28 May
LANGUAGE
EN
English
LENGTH
243
Pages
PUBLISHER
Springer International Publishing
SELLER
Springer Nature B.V.
SIZE
6.3
MB
Advances in Network Clustering and Blockmodeling Advances in Network Clustering and Blockmodeling
2019
3rd International Winter School and Conference on Network Science 3rd International Winter School and Conference on Network Science
2017
Evolutionary Games in Complex Topologies Evolutionary Games in Complex Topologies
2012
Proceedings of NetSci-X 2020: Sixth International Winter School and Conference on Network Science Proceedings of NetSci-X 2020: Sixth International Winter School and Conference on Network Science
2020
Complex Networks XII Complex Networks XII
2021
Complex Networks XIII Complex Networks XIII
2023