Minimal-Approximation-Based Decentralized Backstepping Control of Interconnected Time-Delay Systems

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초록

A decentralized adaptive backstepping control design using minimal function approximators is proposed for nonlinear large-scale systems with unknown unmatched time-varying delayed interactions and unknown backlash-like hysteresis nonlinearities. Compared with existing decentralized backstepping methods, the contribution of this paper is to design a simple local control law for each subsystem, consisting of an actual control with one adaptive function approximator, without requiring the use of multiple function approximators and regardless of the order of each subsystem. The virtual controllers for each subsystem are used as intermediate signals for designing a local actual control at the last step. For each subsystem, a lumped unknown function including the unknown nonlinear terms and the hysteresis nonlinearities is derived at the last step and is estimated by one function approximator. Thus, the proposed approach only uses one function approximator to implement each local controller, while existing decentralized backstepping control methods require the number of function approximators equal to the order of each subsystem and a calculation of virtual controllers to implement each local actual controller. The stability of the total controlled closed-loop system is analyzed using the Lyapunov stability theorem.

키워드

Backlash-like hysteresisbacksteppingdecentralized controlminimal function approximators (MFAs)time-varying delaysLARGE-SCALE SYSTEMSOUTPUT-FEEDBACK CONTROLBACKLASH-LIKE HYSTERESISADAPTIVE NEURAL-CONTROLDYNAMIC SURFACE CONTROLNONLINEAR-SYSTEMSFUZZY CONTROLNETWORKSTABILIZATIONDESIGN
제목
Minimal-Approximation-Based Decentralized Backstepping Control of Interconnected Time-Delay Systems
저자
Choi, Yun HoYoo, Sung Jin
DOI
10.1109/TCYB.2015.2507165
발행일
2016-12
유형
Article
저널명
IEEE Transactions on Cybernetics
46
12
페이지
3401 ~ 3413