Switching power converters are nonlinear and time variant systems. The classical controller design for a switching power converter based on the linear model derived by one of conventional modelling methods. However the parameter and load variations and input unregulated voltage are not taken into consideration simultaneously in a controller design. In this paper, we use "input-output feedback linearization" technique for nonlinear control issue, and "Kharitonov, Hif and mu-synthesis" techniques for robust control issue to design of nonlinear and linear robust controllers to access both satisfactory stability and satisfactory performance, even in case of uncertainties and disturbances, for typical fifth-order DC-DC Switching power converter....
The subject of this thesis is the analysis and interpretation of the physical behavior and the robus...
Abstract—This paper deals with model-based robust control of dc/dc power electronic converters. The...
This research work introduces a new method for feedback control of power electronics with non-linear...
Switching power converters are nonlinear and time variant systems. The classical controller design f...
The switched mode dc-dc converters are some of the simplest power electronic circuits which convert ...
This report addresses the use of linear robust control theory in control of Dc-Dc switching converte...
In this paper a comparison among three control strategies is presented, with application to a boost ...
Conventional control of switching power conversion is based on a linear model of the system, which l...
This paper introduces a robust nonlinear controller for a switch mode DC-DC boost converter. This in...
The use of switched-mode power converters is continuously growing both in power electronics products...
The analysis is based on the fact that virtually all power factor correction (PFC) converters use a ...
Nonlinear passivity-based control (PBc) algorithms for switched converters have proven to be an inte...
This paper investigates nonlinear control methods for single-ended primary-inductor converters (SEPI...
This invited paper is dedicated to both the nonlinear behavior of a step-up DC/DC converter, and to ...
This article addresses the robust output regulation problem for a class of nonlinear switched power ...
The subject of this thesis is the analysis and interpretation of the physical behavior and the robus...
Abstract—This paper deals with model-based robust control of dc/dc power electronic converters. The...
This research work introduces a new method for feedback control of power electronics with non-linear...
Switching power converters are nonlinear and time variant systems. The classical controller design f...
The switched mode dc-dc converters are some of the simplest power electronic circuits which convert ...
This report addresses the use of linear robust control theory in control of Dc-Dc switching converte...
In this paper a comparison among three control strategies is presented, with application to a boost ...
Conventional control of switching power conversion is based on a linear model of the system, which l...
This paper introduces a robust nonlinear controller for a switch mode DC-DC boost converter. This in...
The use of switched-mode power converters is continuously growing both in power electronics products...
The analysis is based on the fact that virtually all power factor correction (PFC) converters use a ...
Nonlinear passivity-based control (PBc) algorithms for switched converters have proven to be an inte...
This paper investigates nonlinear control methods for single-ended primary-inductor converters (SEPI...
This invited paper is dedicated to both the nonlinear behavior of a step-up DC/DC converter, and to ...
This article addresses the robust output regulation problem for a class of nonlinear switched power ...
The subject of this thesis is the analysis and interpretation of the physical behavior and the robus...
Abstract—This paper deals with model-based robust control of dc/dc power electronic converters. The...
This research work introduces a new method for feedback control of power electronics with non-linear...