A model reduction approach for asymptotically stable linear delay-differential equations is presented in this paper. Specifically, a balancing approach is developed on the basis of energy functionals that provide (bounds on) a measure of energy related to observability and controllability, respectively. The reduced-order model derived in this way is again a delay-differential equation, such that the method is structure preserving. In addition, asymptotic stability is preserved and an a priori bound on the reduction error is derived, providing a measure of accuracy of the reduction. The results are illustrated by means of application on an example.</p
In this paper, a structure-preserving model reduction approach for a class of delay differential equ...
In this paper, a structure-preserving model reduction approach for a class of delay differential equ...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...
A model reduction approach for asymptotically stable linear delay-differential equations is presente...
A model reduction approach for asymptotically stable linear delay-differential equations is presente...
A model reduction approach for asymptotically stable linear delay-differential equations is presente...
International audience— A model reduction approach for asymptotically stable linear delay-differenti...
International audience— A model reduction approach for asymptotically stable linear delay-differenti...
\u3cp\u3eA model reduction approach for asymptotically stable linear delay-differential equations is...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...
\u3cp\u3eThis paper proposes a model order reduction technique for asymptotically stable linear time...
This paper presents a model reduction technique for linear delay differential equations that, first,...
This paper presents a model reduction technique for linear delay differential equations that, first,...
\u3cp\u3eThis paper presents a model reduction technique for linear delay differential equations tha...
In this paper, a structure-preserving model reduction approach for a class of delay differential equ...
In this paper, a structure-preserving model reduction approach for a class of delay differential equ...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...
A model reduction approach for asymptotically stable linear delay-differential equations is presente...
A model reduction approach for asymptotically stable linear delay-differential equations is presente...
A model reduction approach for asymptotically stable linear delay-differential equations is presente...
International audience— A model reduction approach for asymptotically stable linear delay-differenti...
International audience— A model reduction approach for asymptotically stable linear delay-differenti...
\u3cp\u3eA model reduction approach for asymptotically stable linear delay-differential equations is...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...
\u3cp\u3eThis paper proposes a model order reduction technique for asymptotically stable linear time...
This paper presents a model reduction technique for linear delay differential equations that, first,...
This paper presents a model reduction technique for linear delay differential equations that, first,...
\u3cp\u3eThis paper presents a model reduction technique for linear delay differential equations tha...
In this paper, a structure-preserving model reduction approach for a class of delay differential equ...
In this paper, a structure-preserving model reduction approach for a class of delay differential equ...
This paper proposes a model order reduction technique for asymptotically stable linear time delay sy...