Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6958319 | Signal Processing | 2016 | 11 Pages |
Abstract
This paper investigates the finite-time filter design problem for a class of switched linear systems with parameter uncertainties and impulsive effects. The sensor failures with output-measurement errors and mode-detection delays are taken into account. A filter mode-dependent Lyapunov-like function construction approach is developed which can effectively reduce the filter design difficulty induced by the mode-detection delays. Sufficient conditions on finite-time boundedness and finite-time Hâ performance are first derived for the augmented switched error systems, upon which the mode-dependent finite-time Hâ filter is designed. Performance of the potential of the developed filter is illustrated by a numerical example and an application to PWM (Pulse-Width-Modulation)-driven boost converter.
Related Topics
Physical Sciences and Engineering
Computer Science
Signal Processing
Authors
Shun Wang, Michael Basin, Lixian Zhang, Ming Zeng, Tasawar Hayat, Ahmed Alsaedi,