Different Approaches to Community Detection
This chapter unfolds different aims underpinning community detection – in a relaxed form that includes assortative as well as disassortative group structures with dense and sparse internal connections, respectively – and discusses how the resulting problem perspectives relate to various applications...
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| Vydané v: | Advances in Network Clustering and Blockmodeling s. 105 - 119 |
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| Hlavní autori: | , , , |
| Médium: | Kapitola |
| Jazyk: | English |
| Vydavateľské údaje: |
United Kingdom
John Wiley & Sons, Incorporated
2020
John Wiley & Sons, Ltd |
| Edícia: | Wiley Series in Computational and Quantitative Social Science |
| Predmet: | |
| ISBN: | 9781119224709, 1119224705, 1119483298, 9781119483298 |
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| Abstract | This chapter unfolds different aims underpinning community detection – in a relaxed form that includes assortative as well as disassortative group structures with dense and sparse internal connections, respectively – and discusses how the resulting problem perspectives relate to various applications. It focuses on four broad perspectives that have served as motivation for community detection in the literature: the cut‐based perspective that minimizes a constraint such as the number of links between groups of nodes, the clustering perspective that maximizes internal density in groups of nodes, the stochastic block model perspective that identifies groups of nodes in which nodes are stochastically equivalent, and the dynamical perspective that identifies groups of nodes in which flows stay for a relatively long time such that they form building blocks of dynamics on networks. While this categorization is not unique, the authors believe that it can help clarify concepts about community detection. |
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| AbstractList | This chapter unfolds different aims underpinning community detection - in a relaxed form that includes assortative as well as disassortative group structures with dense and sparse internal connections, respectively - and discusses how the resulting problem perspectives relate to various applications. It focuses on four broad perspectives that have served as motivation for community detection in the literature: the cut-based perspective that minimizes a constraint such as the number of links between groups of nodes, the clustering perspective that maximizes internal density in groups of nodes, the stochastic block model perspective that identifies groups of nodes in which nodes are stochastically equivalent, and the dynamical perspective that identifies groups of nodes in which flows stay for a relatively long time such that they form building blocks of dynamics on networks. While this categorization is not unique, the authors believe that it can help clarify concepts about community detection. |
| Author | Delvenne, Jean‐Charles Lambiotte, Renaud Rosvall, Martin Schaub, Michael T. |
| Author_xml | – sequence: 1 givenname: Martin surname: Rosvall fullname: Rosvall, Martin organization: Umeå University – sequence: 2 givenname: Jean‐Charles surname: Delvenne fullname: Delvenne, Jean‐Charles organization: Université Catholique de Louvain – sequence: 3 givenname: Michael T. surname: Schaub fullname: Schaub, Michael T. organization: Massachusetts Institute of Technology, University of Oxford – sequence: 4 givenname: Renaud surname: Lambiotte fullname: Lambiotte, Renaud organization: University of Oxford |
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| Copyright | 2020 John Wiley & Sons Ltd |
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| Editor | Batagelj, Vladimir Doreian, Patrick Ferligoj, Anuska |
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| Snippet | This chapter unfolds different aims underpinning community detection – in a relaxed form that includes assortative as well as disassortative group structures... This chapter unfolds different aims underpinning community detection - in a relaxed form that includes assortative as well as disassortative group structures... |
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| SubjectTerms | Assortative group structure Clustering perspective Community detection Cut-based perspective Disassortative group structure Dynamical perspective Stochastic block model perspective |
| Title | Different Approaches to Community Detection |
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