DocumentCode :
184
Title :
Performance-Oriented Adaptive Robust Control of a Class of Nonlinear Systems Preceded by Unknown Dead Zone With Comparative Experimental Results
Author :
Hu, Chuxiong ; Yao, Bin ; Wang, Qingfeng
Author_Institution :
State Key Lab. of Fluid Power Transm. & Control, Zhejiang Univ., Hangzhou, China
Volume :
18
Issue :
1
fYear :
2013
fDate :
Feb. 2013
Firstpage :
178
Lastpage :
189
Abstract :
This paper presents an integrated direct/indirect adaptive robust control scheme for a class of nonlinear dynamic systems preceded by unknown nonsymmetric, nonequal slope dead-zone nonlinearity. Departing from existing approximate adaptive dead-zone compensations, this paper uses indirect parameter estimation algorithms along with on-line condition monitoring to obtain an accurate estimation of the unknown dead zone when certain relaxed persistent-excitation conditions are satisfied-a theoretical result that cannot be achieved with the existing methods. Such a result is obtained by making full use of the fact that though not being linearly parameterized globally, the unknown dead zone can still be linearly parameterized perfectly within certain known working ranges. With these accurate estimates of dead-zone parameters, perfect dead-zone compensation is then constructed and utilized in the development of a performance-oriented adaptive robust control algorithm for the overall system. Consequently, asymptotic output tracking is achieved even in the presence of unknown dead zone. In addition, the proposed algorithm achieves certain guaranteed robust transient performance and final tracking accuracy even when the entire system may be subjected to other uncertain nonlinearities and time-varying disturbances. The proposed algorithm is also experimentally tested on a linear motor drive system preceded by a simulated unknown nonsymmetric dead zone. Comparative experimental results obtained validate the effectiveness of dead-zone compensation and the high-performance nature of the proposed approach in practical implementation.
Keywords :
adaptive control; control nonlinearities; linear motors; machine control; motor drives; nonlinear dynamical systems; parameter estimation; robust control; time-varying systems; uncertain systems; adaptive dead-zone compensations; asymptotic output tracking; dead-zone parameter estimation; indirect parameter estimation algorithms; integrated direct-indirect adaptive robust control scheme; linear motor drive system; nonlinear dynamic systems; online condition monitoring; perfect dead-zone compensation; performance-oriented adaptive robust control algorithm; relaxed persistent-excitation conditions; time-varying disturbances; uncertain nonlinearities; unknown dead zone; unknown nonsymmetric nonequal slope dead-zone nonlinearity; Accuracy; Adaptation models; Adaptive systems; Educational institutions; Nonlinear systems; Robust control; Robustness; Adaptive control; nonlinear systems; parameter estimation; robust control; uncertainty;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2011.2162633
Filename :
6022799
Link To Document :
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