ENGLISH

Hybrid Self-Organizing Modeling Systems

Book information

Publisher
Springer-Verlag Berlin Heidelberg
Year
2009
ISBN
978-3-642-00184-0, 978-3-642-00192-5, 978-3-642-00263-2
DOI
10.1007/978-3-642-01530-4
LCC
QA76.9.S63 V46 2009
Open Library ID
OL24815171M
Language
english
Format
PDF
Filesize
9 MB (9638688 bytes)
Series
Studies in Computational Intelligence 211
Edition
1
Pages
282\296
Topic
Physics
Library
Kingdwarf
Time added
2010-01-07 06:59:20

Description

The Group Method of Data Handling (GMDH) is a typical inductive modeling method that is built on principles of self-organization for modeling complex systems. However, it is known to often under-perform on non-parametric regression tasks, while time series modeling GMDH exhibits a tendency to find very complex polynomials that cannot model well future, unseen oscillations of the series. In order to alleviate these problems, GMDH has been recently hybridized with some computational intelligence (CI) techniques resulting in more robust and flexible hybrid intelligent systems for solving complex, real-world problems. The central theme of this book is to present in a very clear manner hybrids of some computational intelligence techniques and GMDH approach. The hybrids discussed in the book include GP-GMDH (Genetic Programming-GMDH) algorithm, GA-GMDH (Genetic Algorithm-GMDH) algorithm, DE-GMDH (Differential Evolution-GMDH) algorithm, and PSO-GMDH (Particle Swarm Optimization) algorithm. Also included is the description of the recently introduced GAME (Group Adaptive Models Evolution algorithm. The hybrid character of models and their self-organizing ability give these hybrid self-organizing modeling systems an advantage over standard data mining models. The modeling and data mining solutions of several real-life problems in the areas of engineering, bioinformatics, finance, and economics are presented in the chapters. The book will benefit amongst others, people who are working in the areas of neural networks, machine learning, artificial intelligence, complex system modeling and analysis, and optimization.

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