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Emergent Behavior in Complex Systems Engineering
A Modeling and Simulation Approach
Saurabh Mittal (Author), Saikou Diallo (Author), Andreas Tolk (Author), William B. Rouse (Series edited by)
9781119378860, Wiley
Hardback, published 29 June 2018
416 pages
23.1 x 15.2 x 2.5 cm, 0.816 kg
A comprehensive text that reviews the methods and technologies that explore emergent behavior in complex systems engineering in multidisciplinary fields In Emergent Behavior in Complex Systems Engineering, the authors present the theoretical considerations and the tools required to enable the study of emergent behaviors in manmade systems. Information Technology is key to today’s modern world. Scientific theories introduced in the last five decades can now be realized with the latest computational infrastructure. Modeling and simulation, along with Big Data technologies are at the forefront of such exploration and investigation. The text offers a number of simulation-based methods, technologies, and approaches that are designed to encourage the reader to incorporate simulation technologies to further their understanding of emergent behavior in complex systems. The authors present a resource for those designing, developing, managing, operating, and maintaining systems, including system of systems. The guide is designed to help better detect, analyse, understand, and manage the emergent behaviour inherent in complex systems engineering in order to reap the benefits of innovations and avoid the dangers of unforeseen consequences. This vital resource: Written for researchers, lecturers, and students, Emergent Behavior in Complex Systems Engineering provides an overview of the current discussions on complexity and emergence, and shows how systems engineering methods in general and simulation methods in particular can help in gaining new insights in complex systems engineering.
FOREWORD x PREFACE xiii ABOUT THE EDITORS xvi LIST OF CONTRIBUTORS xviii SECTION I EMERGENT BEHAVIOR IN COMPLEX SYSTEMS 1 1 Metaphysical and Scientific Accounts of Emergence: Varieties of Fundamentality and Theoretical Completeness 3 2 Emergence: What does it mean and How is it Relevant to Computer Engineering? 21 3 System Theoretic Foundations for Emergent Behavior Modeling: The Case of Emergence of Human Language in a Resource-Constrained Complex Intelligent Dynamical System 35 4 Generative Parallax Simulation: Creative Cognition Models of Emergence for Simulation-Driven Model Discovery 59 SECTION II EMERGENT BEHAVIOR MODELING IN COMPLEX SYSTEMS ENGINEERING 77 5 Complex Systems Engineering and the Challenge of Emergence 79 6 Emergence in Complex Enterprises 99 7 Emergence in Information Economies: An Agent-Based Modeling Perspective 129 8 Modeling Emergence in Systems of Systems using Thermodynamic Concepts 149 9 Induced Emergence in Computational Social Systems Engineering: Multimodels and Dynamic Couplings as Methodological Basis 171 10 Applied Complexity Science: Enabling Emergence through Heuristics and Simulations 201 SECTION III ENGINEERING EMERGENT BEHAVIOR IN COMPUTATIONAL ENVIRONMENTS 227 11 Toward the Automated Detection of Emergent Behavior 229 12 Isolating the Causes of Emergent Failures in Computer Software 263 13 From Modularity to Complexity: A Cross-Disciplinary Framework for Characterizing Systems 285 14 The Emergence of Social Schemas and Lossy Conceptual Information Networks: How Information Transmission can lead to the Apparent "Emergence" of Culture 321 15 Modeling and Simulation of Emergent Behavior in Transportation Infrastructure Restoration 349 SECTION IV RESEARCH AGENDA 369 16 Research Agenda for Next-Generation Complex Systems Engineering 371 INDEX 391
John Symons
Wesley J. Wildman and F. LeRon Shults
Bernard P. Zeigler and Saurabh Mittal
Levent Yilmaz
Andreas Tolk, Saikou Diallo, and Saurabh Mittal
William B. Rouse
Erika Frydenlund and David C. Earnest
John J. Johnson IV, Jose J. Padilla, and Andres Sousa-Poza
Tuncer Ören, Saurabh Mittal, and Umut Durak
Michael D. Norman, Matthew T.K. Koehler, and Robert Pitsko
Claudia Szabo and Lachlan Birdsey
Ross Gore
Chih-Chun Chen and Nathan Crilly
Justin E. Lane
Akhilesh Ojha, Steven Corns, Tom Shoberg, Ruwen Qin, and Suzanna Long
Saikou Diallo, Saurabh Mittal, and Andreas Tolk
Subject Areas: Electronics & communications engineering [TJ]
