International audienceIn this paper, it is proved that a predictor-based feedback controller can effectively yield asymptotic convergence for a class of linear systems subject to input-dependent input delay. This class is characterized by the delay being implicitly related to past values of the input via an integral model. This situation is representative of systems where transport phenomena take place, as is frequent in the process industry. The sufficient conditions obtained for asymptotic stabilization bring a local result and require the magnitude of the feedback gain to be consistent with the initial conditions scale. Arguments of proof for this novel result include general Halanay inequalities for delay differential equations and buil...
International audienceA new predictive scheme is proposed for the control of Linear Time Invariant (...
We provide a reduction model approach for achieving global exponential stabilization of linear syste...
International audienceRobust stabilization of a class of imperfectly known systems with time-varying...
International audienceThis study addresses the problem of delay compensation via a predictor-based o...
International audienceThis paper contains a result proving that a predictor feedback controller can ...
International audienceThis paper investigates prediction-based stabilization for a class of linear s...
International audienceWe investigate the design of a prediction-based controller for a linear system...
International audienceWe investigate the design of a prediction-based controller for a linear system...
International audienceThis paper addresses the design of a robust prediction-based controller for li...
Abstract—We introduce and solve stabilization problems for linear and nonlinear systems with state-d...
Summarization: For nonlinear systems, we develop a PDE-based predictor-feedback control design, whic...
International audienceWe provide a reduction model approach for achieving global exponential stabili...
International audienceThe input-output inversion of a system under the effect of input delays typica...
International audienceWe provide a new sequential predictors approach for the exponential stabilizat...
International audienceA new predictive scheme is proposed for the control of Linear Time Invariant (...
We provide a reduction model approach for achieving global exponential stabilization of linear syste...
International audienceRobust stabilization of a class of imperfectly known systems with time-varying...
International audienceThis study addresses the problem of delay compensation via a predictor-based o...
International audienceThis paper contains a result proving that a predictor feedback controller can ...
International audienceThis paper investigates prediction-based stabilization for a class of linear s...
International audienceWe investigate the design of a prediction-based controller for a linear system...
International audienceWe investigate the design of a prediction-based controller for a linear system...
International audienceThis paper addresses the design of a robust prediction-based controller for li...
Abstract—We introduce and solve stabilization problems for linear and nonlinear systems with state-d...
Summarization: For nonlinear systems, we develop a PDE-based predictor-feedback control design, whic...
International audienceWe provide a reduction model approach for achieving global exponential stabili...
International audienceThe input-output inversion of a system under the effect of input delays typica...
International audienceWe provide a new sequential predictors approach for the exponential stabilizat...
International audienceA new predictive scheme is proposed for the control of Linear Time Invariant (...
We provide a reduction model approach for achieving global exponential stabilization of linear syste...
International audienceRobust stabilization of a class of imperfectly known systems with time-varying...