Abstract
The present paper is devoted to the fault detection for discrete-time asynchronously positive switched systems with set-membership disturbances via a zonotopic residual assessment approach. Relative to existing studies, the developed scheme presents a time-varying threshold, which enhances detection sensitivity while guaranteeing disturbance robustness. Firstly, a criterion is established to ensure the stability and the mixed ℓ∞/ℓ− performance of the augmented system. Subsequently, a co-design framework is constructed to tune the asynchronous fault detection observer for positive systems, along with switching laws for the considered system. In addition, a zonotopic residual set is designed to spatially encapsulate the feasible state evolutions of the faultless augmented system. Finally, the reliability of the proposed zonotope-based set-membership fault detection scheme is validated via a communication network model.
| Original language | English |
|---|---|
| Article number | 108953 |
| Journal | Journal of the Franklin Institute |
| Volume | 363 |
| Issue number | 14 |
| DOIs | |
| State | Published - Sep 2026 |
Keywords
- Asynchronously switched positive systems
- Fault detection
- The mixed ℓ/ℓperformance
- Zonotopes
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