Abstract
In this paper we study the problem of stabilizing a linear system with a single long time-varying delay in the input. Under the assumption that the open-loop system is stabilizable and not exponentially unstable, a finite dimensional static time-varying linear state feedback controller is obtained by truncating the predictor based controller and by adopting the parametric Lyapunov equation based controller design approach. As long as the time-varying delay is exactly known and bounded, an explicit condition is provided to guarantee the stability of the closed-loop system. It is also shown that the proposed controller achieves semi-global stabilization of the system if its actuator is subject to either magnitude saturation or energy constraints. Numerical examples show the effectiveness of the proposed approach.
| Original language | English |
|---|---|
| Pages (from-to) | 2387-2399 |
| Number of pages | 13 |
| Journal | Automatica |
| Volume | 48 |
| Issue number | 10 |
| DOIs | |
| State | Published - Oct 2012 |
Keywords
- Actuator saturation
- Energy constraints
- Semi-global stabilization
- Stabilization
- Time-varying delay
- Truncated predictor feedback
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