Type-2 Fuzzy Sliding Mode Synchronization

Type-2 Fuzzy Sliding Mode Synchronization

Author: 
Roopaei, M.
Place: 
Hershey, PA
Publisher: 
IGI Global
Date published: 
2010
Record type: 
Responsibility: 
Lin, T. C., jt. author
Chen, Ming-Che, jt. author
Editor: 
Banerjee, Santo
Journal Title: 
Chaos Synchronization and Cryptography for Secure Communications
Source: 
Chaos Synchronization and Cryptography for Secure Communications
Abstract: 

This chapter presents an adaptive interval type-2 fuzzy neural network (FNN) controller to synchronize chaotic systems with training data corrupted by noise or rule uncertainties involving external disturbances. Adaptive interval type-2 FNN control scheme and sliding mode approach are incorporated to deal with the synchronization of non-identical chaotic systems. In the meantime, based on the adaptive fuzzy sliding mode control, the Laypunov stability theorem has been used to testify the asymptotic stability of the chaotic systems. The chattering phenomena in the control efforts can be reduced and the stability analysis of the proposed control scheme will be guaranteed in the sense that all the states and signals are uniformly bounded and the external disturbance on the synchronization error can be attenuated. The simulation example is included to confirm validity and performance of the advocated design methodology.

Series: 
Advances in Information Security, Privacy, and Ethics

CITATION: Roopaei, M.. Type-2 Fuzzy Sliding Mode Synchronization edited by Banerjee, Santo . Hershey, PA : IGI Global , 2010. Chaos Synchronization and Cryptography for Secure Communications - Available at: https://library.au.int/type-2-fuzzy-sliding-mode-synchronization