Robustness of a discrete-time pbkp_redictor-based controller for time-varying measurement delay
Abstract:
A pbkp_redictor-based controller for time-varying delay systems is presented in this paper and its robustness properties for different uncertainties are analyzed. First, a time-varying delay dependent stability condition is expressed in terms of LMIs. Then, uncertainties in the knowledge of all plant-model parameters are considered and the resulting closed-loop system is shown to be robust with respect to these uncertainties. A significant improvement with respect to the same control strategy without pbkp_redictor is achieved. The scheme is applicable to open-loop unstable plants and it has been tested in a real-time application to control the roll angle of a quad-rotor helicopter prototype. The experimental results show good performance and robustness of the proposed scheme even in the presence of long delay uncertainties. © 2011 Elsevier Ltd.
Año de publicación:
2012
Keywords:
- Robust stability
- Digital implementation
- Time-varying delay
- Discrete-pbkp_redictor
- Linear Matrix Inequality (LMI)
Fuente:
Tipo de documento:
Article
Estado:
Acceso restringido
Áreas de conocimiento:
- Sistema de control
Áreas temáticas:
- Métodos informáticos especiales
- Física aplicada
- Ciencias de la computación