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Distributed Fuzzy Control of Multivariable Systems / by Alexander Gegov
(International Series in Intelligent Technologies ; 6)

1st ed. 1996.
出版者 Dordrecht : Springer Netherlands : Imprint: Springer
出版年 1996
本文言語 英語
大きさ XIV, 186 p : online resource
著者標目 *Gegov, Alexander author
SpringerLink (Online service)
件 名 LCSH:Mathematical logic
LCSH:System theory
LCSH:Control theory
LCSH:Electrical engineering
LCSH:Mechanical engineering
FREE:Mathematical Logic and Foundations
FREE:Systems Theory, Control
FREE:Electrical and Electronic Engineering
FREE:Mechanical Engineering
一般注記 1. Introduction -- 2. Dimensional reduction of fuzzy relations in multivariable control systems -- 3. Decomposition of multivariable systems for distributed fuzzy control -- 4. Hierarchical fuzzy control of multivariable systems -- 5. Decentralized fuzzy control of multivariable systems by passive decomposition -- 6. Decentralized fuzzy control of multivariable systems by active decomposition -- 7. Decentralized fuzzy control of multivariable systems by direct decomposition -- 8. Multilayer fuzzy control of multivariable systems by passive decomposition -- 9. Multilayer fuzzy control of multivariable systems by active decomposition -- 10. Multilayer fuzzy control of multivariable systems by direct decomposition -- 11. Distributed fuzzy fault diagnosis in multivariable control systems -- 12. Conclusions -- References
It is known that many control processes are characterized by both quantitative and qualitative complexity. Tbe quantitative complexity is usually expressed in a large number of state variables, respectively high dimensional mathematical model. Tbe qualitative complexity is usually associated with uncertain behaviour, respectively approximately known mathematical model. If the above two aspects of complexity are considered separately, the corresponding control problem can be easily solved. On one hand, large scale systems theory has existed for more than 20 years and has proved its capabilities in solving high dimensional control problems on the basis of decomposition, hierarchy, decentralization and multilayers. On the other hand, the fuzzy linguistic approach is almost at the same age and has shown its advantages in solving approximately formulated control problems on the basis of linguistic reasoning and logical inference. However, if both aspects of complexity are considered together, the corresponding control problem becomes non-trivial and does not have an easy solution. Modem control theory and practice have reacted accordingly to the above mentioned new cballenges of tbe day by utilizing the latest achievements in computer technology and artificial intelligence distributed computation and intelligent operation. In this respect, a new field has emerged in the last decade, called " Distributed intelligent control systems" . However, the majority of the familiar works in this field are still either on an empirical or on a conceptual level and this is a significant drawback
HTTP:URL=https://doi.org/10.1007/978-94-015-8640-5
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ISBN 9789401586405

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