DocumentCode
2616935
Title
Higher-Order Neural Network Based Root-Solving Controller for Adaptive Tracking of Stable Nonlinear Plants
Author
Butt, Naveed Razzaq ; Shafiq, Muhammad
Author_Institution
Dept. of Syst. Eng., King Fahd Univ. of Pet. & Minerals, Dhahran
fYear
0
fDate
0-0 0
Firstpage
1
Lastpage
6
Abstract
The use of intelligent control schemes in nonlinear model based control (NMBC) has gained widespread popularity. Neural networks, in particular, have been used extensively to model the dynamics of nonlinear plants. However, in most cases, these models do not lend themselves to easy maneuvering for controller design. Therefore, a common need is being felt to develop intelligent control strategies that lead to computationally simple control laws. To achieve this objective, the present study combines the approximation power of higher-order neural networks (HONN) with the control-oriented nature of the recently developed U-model. By introducing the U-model equivalence of a higher-order neural unit (HONU), the control law synthesis part is reduced to a simple polynomial root-solving procedure. The proposed scheme is based on the robust internal model control (IMC) structure and is suitable for stable nonlinear plants with uncertain dynamics. The main feature of the proposed structure is its ability to capture higher-order nonlinear properties of the input pattern space while allowing the synthesis of a simple control law. The scheme is therefore expected to prove extremely useful in the area of nonlinear adaptive control. The effectiveness of the proposed scheme is demonstrated through application to various nonlinear models
Keywords
adaptive control; control system synthesis; intelligent control; neurocontrollers; nonlinear control systems; stability; U-model equivalence; control law synthesis; higher-order neural network based root-solving controller adaptive tracking; higher-order neural unit; higher-order nonlinear properties; intelligent control; internal model control structure; nonlinear adaptive control; nonlinear model based control; polynomial root-solving procedure; stable nonlinear plants; uncertain dynamics; Adaptive control; Autoregressive processes; Intelligent control; Minerals; Neural networks; Petroleum; Polynomials; Predictive models; Programmable control; Systems engineering and theory;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering of Intelligent Systems, 2006 IEEE International Conference on
Conference_Location
Islamabad
Print_ISBN
1-4244-0456-8
Type
conf
DOI
10.1109/ICEIS.2006.1703175
Filename
1703175
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