The motion of fluids, such as air or water, is central to many engineering systems of significant economic and environmental importance. Examples range from air/fuel mixing in combustion engines to turbulence induced noise and fatigue on aircraft. Recent advances in novel sensor/actuator technologies have raised the intriguing prospect of actively sensing and manipulating the motion of the fluid within these systems, making them ripe for feedback control, provided a suitable control model exists. Unfortunately, the models for many of these systems are described by nonlinear, partial differential-algebraic equations for which few, if any, controller synthesis techniques exist. In stark contrast, the majority of established control theory ass...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
<p>A new framework is presented for estimation and control of instabilities in wall-bounded shear fl...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
The motion of fluids, such as air or water, is central to many engineering systems of significant e...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
Dynamical systems theory can significantly contribute to the understanding and control of fluid flow...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
The central objective of this research program was the development of methods for nonlinear distribu...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
Control of fluid flows can be beneficial in a large number of situations and in particular for the p...
The dissertation introduces a constructive and rigorous approach to design boundary controllers and ...
Control design for heat transfer processes usually has to deal with significant uncertainty in param...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
In this thesis we apply linear feedback control to spatially evolving flows in order to minimize dis...
Control of the transition of laminar flow to turbulence would result in lower drag and reduced energ...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
<p>A new framework is presented for estimation and control of instabilities in wall-bounded shear fl...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
The motion of fluids, such as air or water, is central to many engineering systems of significant e...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
Dynamical systems theory can significantly contribute to the understanding and control of fluid flow...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
The central objective of this research program was the development of methods for nonlinear distribu...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
Control of fluid flows can be beneficial in a large number of situations and in particular for the p...
The dissertation introduces a constructive and rigorous approach to design boundary controllers and ...
Control design for heat transfer processes usually has to deal with significant uncertainty in param...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
In this thesis we apply linear feedback control to spatially evolving flows in order to minimize dis...
Control of the transition of laminar flow to turbulence would result in lower drag and reduced energ...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
<p>A new framework is presented for estimation and control of instabilities in wall-bounded shear fl...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...