English

Saving Human Lives: What Complexity Science and Information Systems can Contribute

Physics and Society 2015-02-04 v2 Social and Information Networks Adaptation and Self-Organizing Systems

Abstract

We discuss models and data of crowd disasters, crime, terrorism, war and disease spreading to show that conventional recipes, such as deterrence strategies, are often not effective and sufficient to contain them. Many common approaches do not provide a good picture of the actual system behavior, because they neglect feedback loops, instabilities and cascade effects. The complex and often counter-intuitive behavior of social systems and their macro-level collective dynamics can be better understood by means of complexity science. We highlight that a suitable system design and management can help to stop undesirable cascade effects and to enable favorable kinds of self-organization in the system. In such a way, complexity science can help to save human lives.

Keywords

Cite

@article{arxiv.1402.7011,
  title  = {Saving Human Lives: What Complexity Science and Information Systems can Contribute},
  author = {Dirk Helbing and Dirk Brockmann and Thomas Chadefaux and Karsten Donnay and Ulf Blanke and Olivia Woolley-Meza and Mehdi Moussaid and Anders Johansson and Jens Krause and Sebastian Schutte and Matjaz Perc},
  journal= {arXiv preprint arXiv:1402.7011},
  year   = {2015}
}

Comments

67 pages, 25 figures; accepted for publication in Journal of Statistical Physics [for related work see http://www.futurict.eu/]

R2 v1 2026-06-22T03:17:20.040Z