Optimal Deployment of Resources for Maximizing Impact in Spreading Processes
August 29, 2016 Β· Declared Dead Β· π Proceedings of the National Academy of Sciences of the United States of America
"No code URL or promise found in abstract"
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Authors
Andrey Y. Lokhov, David Saad
arXiv ID
1608.08278
Category
cs.SI: Social & Info Networks
Cross-listed
cond-mat.stat-mech,
physics.soc-ph
Citations
75
Venue
Proceedings of the National Academy of Sciences of the United States of America
Last Checked
5 months ago
Abstract
The effective use of limited resources for controlling spreading processes on networks is of prime significance in diverse contexts, ranging from the identification of "influential spreaders" for maximizing information dissemination and targeted interventions in regulatory networks, to the development of mitigation policies for infectious diseases and financial contagion in economic systems. Solutions for these optimization tasks that are based purely on topological arguments are not fully satisfactory; in realistic settings the problem is often characterized by heterogeneous interactions and requires interventions over a finite time window via a restricted set of controllable nodes. The optimal distribution of available resources hence results from an interplay between network topology and spreading dynamics. We show how these problems can be addressed as particular instances of a universal analytical framework based on a scalable dynamic message-passing approach and demonstrate the efficacy of the method on a variety of real-world examples.
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