Abstract
This paper addresses the problem of delay-dependent robust and reliable $\mathscr {H}-{\infty }$ static output feedback (SOF) control for uncertain discrete-time piecewise-affine (PWA) systems with time-delay and actuator failure in a singular system setup. The Markov chain is applied to describe the actuator faults behaviors. In particular, by utilizing a system augmentation approach, the conventional closed-loop system is converted into a singular PWA system. By constructing a mode-dependent piecewise Lyapunov-Krasovskii functional, a new $\mathscr {H}-{\infty }$ performance analysis criterion is then presented, where a novel summation inequality and S-procedure are succeedingly employed. Subsequently, thanks to the special structure of the singular system formulation, the PWA SOF controller design is proposed via a convex program. Illustrative examples are finally given to show the efficacy and less conservatism of the presented approach.
| Original language | English |
|---|---|
| Pages (from-to) | 79-91 |
| Number of pages | 13 |
| Journal | IEEE Transactions on Reliability |
| Volume | 67 |
| Issue number | 1 |
| DOIs | |
| State | Published - Mar 2018 |
Keywords
- Actuator failure
- mode-dependent piecewise lyapunov functional
- piecewise-affine (PWA) systems
- reliable output feedback control
- time-varying delay
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