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      A unified synchronization criterion for impulsive dynamical networks

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      Automatica
      Elsevier BV

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          Emergence of scaling in random networks

          Systems as diverse as genetic networks or the world wide web are best described as networks with complex topology. A common property of many large networks is that the vertex connectivities follow a scale-free power-law distribution. This feature is found to be a consequence of the two generic mechanisms that networks expand continuously by the addition of new vertices, and new vertices attach preferentially to already well connected sites. A model based on these two ingredients reproduces the observed stationary scale-free distributions, indicating that the development of large networks is governed by robust self-organizing phenomena that go beyond the particulars of the individual systems.
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            Master Stability Functions for Synchronized Coupled Systems

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              Synchronization in complex networks

              Synchronization processes in populations of locally interacting elements are in the focus of intense research in physical, biological, chemical, technological and social systems. The many efforts devoted to understand synchronization phenomena in natural systems take now advantage of the recent theory of complex networks. In this review, we report the advances in the comprehension of synchronization phenomena when oscillating elements are constrained to interact in a complex network topology. We also overview the new emergent features coming out from the interplay between the structure and the function of the underlying pattern of connections. Extensive numerical work as well as analytical approaches to the problem are presented. Finally, we review several applications of synchronization in complex networks to different disciplines: biological systems and neuroscience, engineering and computer science, and economy and social sciences.
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                Author and article information

                Journal
                Automatica
                Automatica
                Elsevier BV
                00051098
                July 2010
                July 2010
                : 46
                : 7
                : 1215-1221
                Article
                10.1016/j.automatica.2010.04.005
                2d389c47-3fcd-4a03-910c-18c038375d88
                © 2010

                http://www.elsevier.com/tdm/userlicense/1.0/

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