In some practical problems, for instance in the control systems for the suppression of vibration in mechanical systems, the state-derivative signals are easier to obtain than the state signals. New necessary and sufficient linear matrix inequalities (LMI) conditions for the design of state-derivative feedback for multi-input (MI) linear systems are proposed. For multi-input/multi-output (MIMO) linear time-invariant or time-varying plants, with or without uncertainties in their parameters, the proposed methods can include in the LMI-based control designs the specifications of the decay rate, bounds on the output peak, and bounds on the state-derivative feedback matrix K. These design procedures allow new specifications and also, they conside...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
Techniques for stabilization of linear descriptor systems by state-derivative feedback are proposed....
Techniques for stabilization of linear descriptor systems by state-derivative feedback are proposed....
Techniques for stabilization of linear descriptor systems by state-derivative feedback are proposed....
The motivation for the use of state-derivative feedback instead of conventional state feedback is du...
In some practical problems, for instance in the control systems for the suppression of vibration in ...
A simple method for designing a digital state-derivative feedback gain and a feedforward gain such t...
In some practical problems, for instance, the suppression of vibration in mechanical systems, the st...
Linear matrix inequality conditions are given for the existence of a stabilising linear parameter de...
One of the most important contributions of robust control theory has been the devel opment of a new ...
The design of precise controllers in presence of significant uncertainly requires the use of robust ...
Abstract: This paper presents a methodology in the Linear Matrix Inequality (LMI) framework to joint...
Session: Robust Control - no. 5This paper addresses the design of output controllers of chosen order...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
Techniques for stabilization of linear descriptor systems by state-derivative feedback are proposed....
Techniques for stabilization of linear descriptor systems by state-derivative feedback are proposed....
Techniques for stabilization of linear descriptor systems by state-derivative feedback are proposed....
The motivation for the use of state-derivative feedback instead of conventional state feedback is du...
In some practical problems, for instance in the control systems for the suppression of vibration in ...
A simple method for designing a digital state-derivative feedback gain and a feedforward gain such t...
In some practical problems, for instance, the suppression of vibration in mechanical systems, the st...
Linear matrix inequality conditions are given for the existence of a stabilising linear parameter de...
One of the most important contributions of robust control theory has been the devel opment of a new ...
The design of precise controllers in presence of significant uncertainly requires the use of robust ...
Abstract: This paper presents a methodology in the Linear Matrix Inequality (LMI) framework to joint...
Session: Robust Control - no. 5This paper addresses the design of output controllers of chosen order...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...
International audienceThis paper aims at developing a robust observer–based estimated state feedback...