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E-book
Author Holland, John H. (John Henry), 1929-2015.

Title Signals and boundaries : building blocks for complex adaptive systems / John H. Holland
Published Cambridge, Mass. : MIT Press, ©2012
©2012

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Description 1 online resource (viii, 308 pages) : illustrations
illustration
Contents Roles of signals and boundaries -- Theory and models: general principles -- Agents and signal processing -- Networks and flows -- Adaptation -- Recombination and reproduction -- Urn models of boundaries -- Boundary hierarchies -- The evolution of niches, a first look -- Language: grammars and niches -- Grammars as finitely generated systems -- An overarching signal/boundary framework -- A dynamic generated system model of ontogeny -- A complete dynamic generated system for signal/boundary studies -- Mathematical models of generated structures -- A short version of the whole
Summary Complex adaptive systems (cas), including ecosystems, governments, biological cells, and markets, are characterized by intricate hierarchical arrangements of boundaries and signals. In ecosystems, for example, niches act as semi-permeable boundaries, and smells and visual patterns serve as signals; governments have departmental hierarchies with memoranda acting as signals; and so it is with other cas. Despite a wealth of data and descriptions concerning different cas, there remain many unanswered questions about "steering" these systems. In Signals and Boundaries, John Holland argues that understanding the origin of the intricate signal/border hierarchies of these systems is the key to answering such questions. He develops an overarching framework for comparing and steering cas through the mechanisms that generate their signal/boundary hierarchies. Holland lays out a path for developing the framework that emphasizes agents, niches, theory, and mathematical models. He discusses, among other topics, theory construction; signal-processing agents; networks as representations of signal/boundary interaction; adaptation; recombination and reproduction; the use of tagged urn models (adapted from elementary probability theory) to represent boundary hierarchies; finitely generated systems as a way to tie the models examined into a single framework; the framework itself, illustrated by a simple finitely generated version of the development of a multi-celled organism; and Markov processes
Bibliography Includes bibliographical references (pages 297-301) and index
Notes English
Print version record
Subject Adaptive control systems.
Adaptation (Biology) -- Mathematical models
Signals and signaling -- Mathematical models
SCIENCE -- System Theory.
TECHNOLOGY & ENGINEERING -- Operations Research.
Adaptation (Biology) -- Mathematical models
Adaptive control systems
Signals and signaling -- Mathematical models
Form Electronic book
LC no. 2011052776
ISBN 0262305895
9780262305891
9780262017831
0262017830
1282133810
9781282133815
9786613806390
6613806390
0262525933
9780262525930