To improve stability and convergence, feedback control is often incorporated with iterative learning control (ILC), resulting in feedback feed-forward ILC (FFILC). In this paper, a general form of FFILC is studied, comprising of two feedback controllers, a state feedback controller and a tracking error compensator, for the robustness and convergence along time direction, and an ILC for performance along the cycle direction. The integrated design of this FFILC scheme is transformed into a robust control problem of an uncertain 2D Roesser system. To describe the stability and convergence quantitatively along the time and the cycle direction, the concepts of robust stability and convergence along the two axes are introduced. A series of algori...
In this paper, a set-point related indirect-type iterative learning control (ILC) design is proposed...
A design of robust iterative learning controller is presented. A sufficient and necessary condition ...
In the past Iterative Learning Control has been shown to be a method that can easily achieve extreme...
A robust iterative learning control (ILC) scheme for batch processes with uncertain perturbations an...
Convergence is an important issue in the design and application of iterative learning control (ILC) ...
In this paper, an iterative learning control (ILC) system is modeled as a two-dimensional (2D) Roess...
A robust feedback integrated with iterative learning control (FILC) scheme for batch processes with ...
Based on a two-dimensional (2D) system description of a batch process in industry, a robust closed-l...
On the basis of the two-dimensional linear quadratic (2DLQ) optimal control developed in the first p...
Based on robust feedback incorporated with iterative learning control scheme, this paper proposes a ...
Certain control applications require that performance variables are explicitly distinguished from me...
Certain control applications require that performance variables are explicitly distinguished from me...
Increasing performance requirements lead to a situation where performance variables need to be expli...
Based on a two-dimensional (2D) Fornasini-Marchsini system description of a batch process in industr...
An iterative learning reliable control (ILRC) scheme is developed in this paper for batch processes ...
In this paper, a set-point related indirect-type iterative learning control (ILC) design is proposed...
A design of robust iterative learning controller is presented. A sufficient and necessary condition ...
In the past Iterative Learning Control has been shown to be a method that can easily achieve extreme...
A robust iterative learning control (ILC) scheme for batch processes with uncertain perturbations an...
Convergence is an important issue in the design and application of iterative learning control (ILC) ...
In this paper, an iterative learning control (ILC) system is modeled as a two-dimensional (2D) Roess...
A robust feedback integrated with iterative learning control (FILC) scheme for batch processes with ...
Based on a two-dimensional (2D) system description of a batch process in industry, a robust closed-l...
On the basis of the two-dimensional linear quadratic (2DLQ) optimal control developed in the first p...
Based on robust feedback incorporated with iterative learning control scheme, this paper proposes a ...
Certain control applications require that performance variables are explicitly distinguished from me...
Certain control applications require that performance variables are explicitly distinguished from me...
Increasing performance requirements lead to a situation where performance variables need to be expli...
Based on a two-dimensional (2D) Fornasini-Marchsini system description of a batch process in industr...
An iterative learning reliable control (ILRC) scheme is developed in this paper for batch processes ...
In this paper, a set-point related indirect-type iterative learning control (ILC) design is proposed...
A design of robust iterative learning controller is presented. A sufficient and necessary condition ...
In the past Iterative Learning Control has been shown to be a method that can easily achieve extreme...