We consider output tracking for a class of viscous nonlinear fluid flows including the incompressible 2D Navier–Stokes equations. The fluid is subject to in-domain inputs and disturbances. We construct an error feedback controller which guarantees approximate local velocity output tracking for a class of reference outputs. The control solution covers point velocity observations and assumes a smooth enough state space. Efficacy of the control solution is illustrated through a numerical example.Peer reviewe
The motion of fluids, such as air or water, is central to many engineering systems of significant ec...
The optimal feedback control problem for the initial-boundary value problem describing a motion of a...
We consider the mathematical formulation, analysis, and the numerical solution of a time-dependent o...
We consider output tracking for a class of viscous nonlinear fluid flows including the incompressibl...
Some systematic approaches to the mathematical formulation and numerical resolution of the linear fe...
AbstractThis paper proposes a methodology for the synthesis of nonlinear finite-dimensional feedback...
Novel sliding mode observer (SMO) and robust nonlinear control methods are presented, which are show...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
We study a temperature and velocity output tracking problem for a two-dimensional room model with th...
The central objective of this research program was the development of methods for nonlinear distribu...
In this thesis we apply linear feedback control to spatially evolving flows in order to minimize dis...
We consider the incompressible Navier-Stokes equation on an open bounded set, with control localised...
Active circulation control of the two-dimensional unsteady separated how past a plate with a suction...
International audienceThis review presents a framework for the input-output analysis, model reductio...
The motion of fluids, such as air or water, is central to many engineering systems of significant ec...
The optimal feedback control problem for the initial-boundary value problem describing a motion of a...
We consider the mathematical formulation, analysis, and the numerical solution of a time-dependent o...
We consider output tracking for a class of viscous nonlinear fluid flows including the incompressibl...
Some systematic approaches to the mathematical formulation and numerical resolution of the linear fe...
AbstractThis paper proposes a methodology for the synthesis of nonlinear finite-dimensional feedback...
Novel sliding mode observer (SMO) and robust nonlinear control methods are presented, which are show...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
We study a temperature and velocity output tracking problem for a two-dimensional room model with th...
The central objective of this research program was the development of methods for nonlinear distribu...
In this thesis we apply linear feedback control to spatially evolving flows in order to minimize dis...
We consider the incompressible Navier-Stokes equation on an open bounded set, with control localised...
Active circulation control of the two-dimensional unsteady separated how past a plate with a suction...
International audienceThis review presents a framework for the input-output analysis, model reductio...
The motion of fluids, such as air or water, is central to many engineering systems of significant ec...
The optimal feedback control problem for the initial-boundary value problem describing a motion of a...
We consider the mathematical formulation, analysis, and the numerical solution of a time-dependent o...