<p><p>This book is devoted to modeling of multi-level complex systems, a challenging domain for engineers, researchers and entrepreneurs, confronted with the transition from learning and adaptability to evolvability and autonomy for technologies, devices and problem solving methods. Chapter 1 introd
Modeling multi-level systems
β Scribed by Octavian Iordache (auth.)
- Publisher
- Springer-Verlag Berlin Heidelberg
- Year
- 2011
- Tongue
- English
- Leaves
- 251
- Series
- Understanding Complex Systems 70
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
This book is devoted to modeling of multi-level complex systems, a challenging domain for engineers, researchers and entrepreneurs, confronted with the transition from learning and adaptability to evolvability and autonomy for technologies, devices and problem solving methods. Chapter 1 introduces the multi-scale and multi-level systems and highlights their presence in different domains of science and technology. Methodologies as, random systems, non-Archimedean analysis, category theory and specific techniques as model categorification and integrative closure, are presented in chapter 2. Chapters 3 and 4 describe polystochastic models, PSM, and their developments. Categorical formulation of integrative closure offers the general PSM framework which serves as a flexible guideline for a large variety of multi-level modeling problems.
Focusing on chemical engineering, pharmaceutical and environmental case studies, the chapters 5 to 8 analyze mixing, turbulent dispersion and entropy production for multi-scale systems. Taking inspiration from systems sciences, chapters 9 to 11 highlight multi-level modeling potentialities in formal concept analysis, existential graphs and evolvable designs of experiments. Case studies refer to separation flow-sheets, pharmaceutical pipeline, drug design and development, reliability management systems, security and failure analysis. Perspectives and integrative points of view are discussed in chapter 12. Autonomous and viable systems, multi-agents, organic and autonomic computing, multi-level informational systems, are revealed as promising domains for future applications.
Written for: engineers, researchers, entrepreneurs and students in chemical, pharmaceutical, environmental and systems sciences engineering, and for applied mathematicians.
β¦ Table of Contents
Front Matter....Pages -
Introduction....Pages 1-10
Methodological Resources....Pages 11-34
Conventional PSM Frames....Pages 35-52
New PSM Frames....Pages 53-70
Mixing in Chemical Reactors....Pages 71-94
Compartmental Systems....Pages 95-106
Turbulent Mixing....Pages 107-123
Entropy....Pages 125-142
Formal Concept Analysis....Pages 143-163
Existential Graphs....Pages 165-177
Evolvable Designs of Experiments....Pages 179-197
Autonomous Systems Perspective....Pages 199-212
Non-Archimedean Analysis....Pages 213-217
Category Theory....Pages 219-228
Back Matter....Pages -
β¦ Subjects
Complexity;Nonlinear Dynamics;Computational Intelligence
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