[[abstract]]A multi-objective genetic algorithm approach is proposed to design tolerance controllers for uncertain interval systems. Given a set of specifications in terms of acceptability ranges of gain margin (GM) and phase margin (PM), the design objective is to evolutionarily derive controllers such that closed-loop stability and desired dynamic performance are guaranteed. On the basis of extremal design philosophy, the design problem is first formulated as constrained optimisation problems based on deviation between the desired and extremal GM/PM of the resulting loop-transfer function, and subsequently optimised via the proposed genetic algorithm. To ensure robust stability of the closed-loop system, root locations associated with the...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
[[abstract]]Design of an optimal controller minimizing the integral of squared error (ISE) of the cl...
[[abstract]]Design of optimal controllers satisfying performance criteria of minimum tracking error ...
This paper presents a novel approach to automatic design of a robust optimal controller for interval...
This paper presents a novel approach to automatic design of a robust optimal controller for interval...
[[abstract]]Design of a robust controller which stabilizes an interval plant from the signal energy ...
This paper proposes a hybrid algorithm for solving constrained semi-infinite optimization problems. ...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
[[abstract]]Design of an optimal controller minimizing the integral of squared error (ISE) of the cl...
[[abstract]]Design of optimal controllers satisfying performance criteria of minimum tracking error ...
This paper presents a novel approach to automatic design of a robust optimal controller for interval...
This paper presents a novel approach to automatic design of a robust optimal controller for interval...
[[abstract]]Design of a robust controller which stabilizes an interval plant from the signal energy ...
This paper proposes a hybrid algorithm for solving constrained semi-infinite optimization problems. ...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
An evolutionary approach to worst-case circuit tolerance design is presented in this paper. Thanks t...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...
In this paper a reliable approach to the tolerance design of electronic circuits is presented. First...