Unreduced Dynamic Complexity: Towards the Unified Science of Intelligent Communication Networks and Software

dc.creatorKirilyuk, Andrei P.
dc.date2006-03-16
dc.date.accessioned2026-07-07T08:37:25Z
dc.date.available2026-07-07T08:37:25Z
dc.descriptionOperation of autonomic communication networks with complicated user-oriented functions should be described as unreduced many-body interaction process. The latter gives rise to complex-dynamic behaviour including fractally structured hierarchy of chaotically changing realisations. We recall the main results of the universal science of complexity (physics/9806002) based on the unreduced interaction problem solution and its application to various real systems, from nanobiosystems (physics/0412097, physics/0502133) and quantum devices (physics/0211071) to intelligent networks (physics/0412058) and emerging consciousness (physics/0409140). We concentrate then on applications to autonomic communication leading to fundamentally substantiated, exact science of intelligent communication and software. It aims at unification of the whole diversity of complex information system behaviour, similar to the conventional, "Newtonian" science order for sequential, regular models of system dynamics. Basic principles and first applications of the unified science of complex-dynamic communication networks and software are outlined to demonstrate its advantages and emerging practical perspectives.
dc.description20 pages, 24 eqs, 28 refs; Invited talk at the IFIP TC6 Conference "Network Control and Engineering for QoS, Security and Mobility" (Lannion, 14-18 November 2005), http://www.netcon05.org/programme.php
dc.identifierhttps://arxiv.org/abs/physics/0603132
dc.identifierhttp://arxiv.org/abs/physics/0603132
dc.identifierIFIP, Vol. 229, Network Control and Engineering for QoS, Security, and Mobility, IV, ed. Gaiti, D. (Springer, Boston, 2007), pp. 1-20
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/140394
dc.subjectGeneral Physics
dc.titleUnreduced Dynamic Complexity: Towards the Unified Science of Intelligent Communication Networks and Software
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