
Advances in Applied Self-organizing Systems
Mikhail Prokopenko(Editor)
Springer (Publisher)
Published on 2. November 2007
Book
Hardback
XII, 376 pages
978-1-84628-981-1 (ISBN)
Article exhausted; check for reprint
Description
This book presents the state-of-the-art in successfully engineered self-organizing systems. It goes further, too, to examine ways to balance design and self-organization in the context of applications. As demonstrated throughout, finding this balance helps to deal with diverse practical challenges. The case studies described illustrate the richness of the topic and provide guidance on its more intricate areas.
More details
Series
Edition
2008
Language
English
Place of publication
London
United Kingdom
Target group
College/higher education
Product notice
Laminated cover
Illustrations
144
12 s/w Tabellen, 144 s/w Abbildungen
1, black & white illustrations
Dimensions
Height: 23.5 cm
Width: 15.5 cm
Weight
1590 gr
ISBN-13
978-1-84628-981-1 (9781846289811)
DOI
10.1007/978-1-84628-982-8
Schweitzer Classification
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Mikhail Prokopenko
Advances in Applied Self-Organizing Systems
Book
05/2013
2nd Edition
Springer
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Additional editions

Mikhail Prokopenko
Advances in Applied Self-organizing Systems
Book
10/2010
Springer
€112.34
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Mikhail Prokopenko
Advances in Applied Self-organizing Systems
E-Book
11/2007
1st Edition
Springer
€106.99
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Content
Design vs. Self-organization.- Foundations and Formalizations of Self-organization.- Distributed Management and Control.- Self-Organizing Traffic Lights: A Realistic Simulation.- A Self-organizing Sensing System for Structural Health Monitoring of Aerospace Vehicles.- Decentralized Decision Making for Multiagent Systems.- Learning Mutation Strategies for Evolution and Adaptation of a Simulated Snakebot.- Self-Organization as Phase Transition in Decentralized Groups of Robots: A Study Based on Boltzmann Entropy.- Distributed Control of Microscopic Robots in Biomedical Applications.- Self-Organizing Computation.- Self-Organizing Digital Systems.- Self-organizing Nomadic Services in Grids.- Immune System Support for Scheduling.- Formal Immune Networks: Self-Organization and Real-World Applications.- A Model for Self-Organizing Data Visualization Using Decentralized Multiagent Systems.- Emergence of Traveling Localizations in Mutualistic-Excitation Media.- Discussion.- A Turing Test for Emergence.