This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of designing robust feedback controllers. This is challenging since whilst many flows are governed by a set of nonlinear, partial differential-algebraic equations (the Navier-Stokes equations), the majority of established control theory assumes models of much greater simplicity, in that they are firstly: linear, secondly: described by ordinary differential equations, and thirdly: finite-dimensional. Linearisation, where appropriate, overcomes the first disparity, but attempts to reconcile the remaining two have proved difficult. This paper addresses these two problems as follows. Firstly, a numerical approach is used to project the governing equati...
The problems of nonlinearity and high dimension have so far prevented a complete solution of the con...
A novel nonlinear feedback control design methodology for incompressible fluid flows aiming at the o...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
The motion of fluids, such as air or water, is central to many engineering systems of significant e...
Dynamical systems theory can significantly contribute to the understanding and control of fluid flow...
Motivated by the need to efficiently obtain low-order models of fluid flows around complex geometrie...
Most real-world fluid flows around aircraft, ground vehicles and water craft are predominantly turbu...
The motion of fluids, such as air or water, is central to many engineering systems of significant ec...
This paper describes a robust linear time-invariant output-feedback control strategy to reduce turbu...
© 2021 Bo JinThe thesis concerns linear feedback control of vortex shedding behind a two-dimensional...
The unsteady separated wakes that develop downstream of vehicles, buildings, and other bluff objects...
The problems of nonlinearity and high dimension have so far prevented a complete solution of the con...
The problems of nonlinearity and high dimension have so far prevented a complete solution of the con...
A novel nonlinear feedback control design methodology for incompressible fluid flows aiming at the o...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
This paper addresses the problem of obtaining low-order models of fluid flows for the purpose of des...
This paper addresses the problem of designing low-order and linear robust feedback controllers that ...
The motion of fluids, such as air or water, is central to many engineering systems of significant e...
Dynamical systems theory can significantly contribute to the understanding and control of fluid flow...
Motivated by the need to efficiently obtain low-order models of fluid flows around complex geometrie...
Most real-world fluid flows around aircraft, ground vehicles and water craft are predominantly turbu...
The motion of fluids, such as air or water, is central to many engineering systems of significant ec...
This paper describes a robust linear time-invariant output-feedback control strategy to reduce turbu...
© 2021 Bo JinThe thesis concerns linear feedback control of vortex shedding behind a two-dimensional...
The unsteady separated wakes that develop downstream of vehicles, buildings, and other bluff objects...
The problems of nonlinearity and high dimension have so far prevented a complete solution of the con...
The problems of nonlinearity and high dimension have so far prevented a complete solution of the con...
A novel nonlinear feedback control design methodology for incompressible fluid flows aiming at the o...
A new framework is presented for estimation and control of instabilities in wall-bounded shear flows...