DocumentCode :
24292
Title :
Synchronization of Underactuated Unknown Heavy Symmetric Chaotic Gyroscopes via Optimal Gaussian Radial Basis Adaptive Variable Structure Control
Author :
Farivar, Faezeh ; Shoorehdeli, Mahdi Aliyari ; Nekoui, Mohammad Ali ; Teshnehlab, Mohammad
Author_Institution :
Control & Intell. Process. Center of Excellence, Univ. of Tehran, Tehran, Iran
Volume :
21
Issue :
6
fYear :
2013
fDate :
Nov. 2013
Firstpage :
2374
Lastpage :
2379
Abstract :
This brief proposes modified projective synchronization (MPS) methods for underactuated unknown heavy symmetric chaotic gyroscope systems via optimal Gaussian radial basis adaptive variable structure control. Chaotic gyroscope systems are considered as underactuated systems where a control input is designed to synchronize the two degree of freedoms interactions. Until now, no investigation of this subject with one control input has been presented. The importance of obtaining synchronization objectives is specified when the dynamics of gyroscope system are unknown. In this brief, using the neural variable structure control technique, a control law is established that guarantees the MPS of underactuated unknown chaotic gyros. In the neural variable structure control, Gaussian radial basis functions are utilized to estimate online the system dynamic functions. Adaptation laws of the online estimator are derived in the sense of the Lyapunov function. Moreover, online and offline optimizers are applied to optimize the energy of the control signal. The proposed solution is generalized to chaos control of the mentioned gyroscopes. Numerical simulations are presented to verify the proposed synchronization methods.
Keywords :
adaptive control; control system synthesis; energy consumption; gyroscopes; neurocontrollers; numerical analysis; optimal control; radial basis function networks; synchronisation; variable structure systems; Gaussian radial basis functions; Lyapunov function; MPS method; control input design; control law; energy optimization; modified projective synchronization method; neural variable structure control technique; numerical simulations; optimal Gaussian radial basis adaptive variable structure control; synchronization objectives; underactuated unknown heavy symmetric chaotic gyroscope systems; Chaos; Evolutionary computation; Gyroscopes; Lyapunov methods; Neural networks; Synchronization; Variable structure systems; Chaotic gyroscope; evolutionary algorithm; neural network; synchronization; variable structure control;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2012.2227965
Filename :
6418004
Link To Document :
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