Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1713783 | Nonlinear Analysis: Hybrid Systems | 2007 | 10 Pages |
Abstract
Complexity-reduced design of a decentralized Hâ state switching controller is presented for nonlinear but nominally linear uncertain continuous-time switching symmetric composite systems with a state-dependent switching rule. First, a reduced-order control design system and an associated non-switching uncertain combination linear system are constructed. Then, the robust Hâ control via switched state feedback is designed for the design system using a min-projection strategy. Finally, it is proved that if this low-order switching controller and the state-dependent switching rule are used as identical switching local controllers of a decentralized switching controller for the global system, then the controller renders the global closed-loop system quadratically stable with prescribed disturbance attenuation bound. The switching decentralized rules depend only on local subsystems states.
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Physical Sciences and Engineering
Engineering
Control and Systems Engineering
Authors
LubomÃr Bakule,