We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and variational linear distributed systems. It was shown in [1] that a system described by ordinary linear constant-coefficient differential equations is Hamiltonian if and only if it is variational. In this paper we extend this result to systems described by linear, constant-coefficient partial differential equations. It is shown that any variational system is Hamiltonian, and that any scalar Hamiltonian system is contained (in general, properly) in a particular variational system.</p
Based on recent developments in the theory of variational and Hamiltonian control systems, this pape...
The Hamiltonian formulation of distributed-parameter systems has been a challenging reserach area fo...
Based on developments in the theory of variational and Hamiltonian control systems by Crouch and van...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
This work extends an earlier result which characterized Hamiltonian systems described by second orde...
Abstract. We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such ...
This work extends a result of Crouch and Lainnabhi which characterized Hamiltonian sys-tems describe...
Hamiltonian systems model a number of important problems in theoretical physics, mechanics, fluid dy...
Based on recent developments in the theory of variational and Hamiltonian control systems, this pape...
The Hamiltonian formulation of distributed-parameter systems has been a challenging reserach area fo...
Based on developments in the theory of variational and Hamiltonian control systems by Crouch and van...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
This work extends an earlier result which characterized Hamiltonian systems described by second orde...
Abstract. We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such ...
This work extends a result of Crouch and Lainnabhi which characterized Hamiltonian sys-tems describe...
Hamiltonian systems model a number of important problems in theoretical physics, mechanics, fluid dy...
Based on recent developments in the theory of variational and Hamiltonian control systems, this pape...
The Hamiltonian formulation of distributed-parameter systems has been a challenging reserach area fo...
Based on developments in the theory of variational and Hamiltonian control systems by Crouch and van...